<?xml version="1.0" encoding="UTF-8"?><!DOCTYPE article PUBLIC "-//NLM//DTD Journal Publishing DTD v3.0 20080202//EN" "http://dtd.nlm.nih.gov/publishing/3.0/journalpublishing3.dtd">
<article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" dtd-version="3.0" xml:lang="en" article-type="research article">
 <front>
  <journal-meta>
   <journal-id journal-id-type="publisher-id">
    oje
   </journal-id>
   <journal-title-group>
    <journal-title>
     Open Journal of Ecology
    </journal-title>
   </journal-title-group>
   <issn pub-type="epub">
    2162-1985
   </issn>
   <issn publication-format="print">
    2162-1993
   </issn>
   <publisher>
    <publisher-name>
     Scientific Research Publishing
    </publisher-name>
   </publisher>
  </journal-meta>
  <article-meta>
   <article-id pub-id-type="doi">
    10.4236/oje.2024.1411047
   </article-id>
   <article-id pub-id-type="publisher-id">
    oje-137180
   </article-id>
   <article-categories>
    <subj-group subj-group-type="heading">
     <subject>
      Articles
     </subject>
    </subj-group>
    <subj-group subj-group-type="Discipline-v2">
     <subject>
      Earth 
     </subject>
     <subject>
       Environmental Sciences
     </subject>
    </subj-group>
   </article-categories>
   <title-group>
    The Potential of Agroforestry Species Diversity and Abundance in a Disturbed Forest Reserve of Ogun State, Nigeria
   </title-group>
   <contrib-group>
    <contrib contrib-type="author" xlink:type="simple">
     <name name-style="western">
      <surname>
       Ibrahim Ndaginna
      </surname>
      <given-names>
       Abdullahi
      </given-names>
     </name> 
     <xref ref-type="aff" rid="aff1"> 
      <sup>1</sup>
     </xref>
    </contrib>
    <contrib contrib-type="author" xlink:type="simple">
     <name name-style="western">
      <surname>
       Mutiu O.
      </surname>
      <given-names>
       Bada
      </given-names>
     </name> 
     <xref ref-type="aff" rid="aff1"> 
      <sup>1</sup>
     </xref> 
     <xref ref-type="aff" rid="aff2"> 
      <sup>2</sup>
     </xref>
    </contrib>
   </contrib-group> 
   <aff id="aff1">
    <addr-line>
     aFaculty of Agriculture, University of Abuja, Abuja, Nigeria
    </addr-line> 
   </aff> 
   <aff id="aff2">
    <addr-line>
     aOgun State Ministry of Forestry, Abeokuta, Nigeria
    </addr-line> 
   </aff> 
   <pub-date pub-type="epub">
    <day>
     05
    </day> 
    <month>
     11
    </month>
    <year>
     2024
    </year>
   </pub-date> 
   <volume>
    14
   </volume> 
   <issue>
    11
   </issue>
   <fpage>
    831
   </fpage>
   <lpage>
    844
   </lpage>
   <history>
    <date date-type="received">
     <day>
      7,
     </day>
     <month>
      September
     </month>
     <year>
      2024
     </year>
    </date>
    <date date-type="published">
     <day>
      2,
     </day>
     <month>
      September
     </month>
     <year>
      2024
     </year> 
    </date> 
    <date date-type="accepted">
     <day>
      2,
     </day>
     <month>
      November
     </month>
     <year>
      2024
     </year> 
    </date>
   </history>
   <permissions>
    <copyright-statement>
     © Copyright 2014 by authors and Scientific Research Publishing Inc. 
    </copyright-statement>
    <copyright-year>
     2014
    </copyright-year>
    <license>
     <license-p>
      This work is licensed under the Creative Commons Attribution International License (CC BY). http://creativecommons.org/licenses/by/4.0/
     </license-p>
    </license>
   </permissions>
   <abstract>
    Nigeria’s deforestation rate is at an alarming level due to weak forest governance, losing about 80 kha of natural forest cover per annum every year to agricultural land expansion, conflicts, and illegal logging. The expansion of agricultural land over other land use is over 50% and it is increasing. Agroforestry, as an option, offers a dynamic, ecologically based, natural resource management system that integrates forest trees into the agricultural landscape for the benefit of land users at all levels. This research aimed to assess the diversity and abundance of agroforestry tree species between the forest and farm zones at Edun Forest Reserve to improve agrobiodiversity by identifying tree species richness around farms in the reserve. A systematic sampling technique was used to sample plots, and relative dominance and important value index were determined. Results showed a significant difference between the species richness between the forest zone and farm zone of Edun Forest Reserve. On the important value index, Gmelina arborea (25.04) has the highest in the forest zone, while Cedrela odorata (0.661) is the least, and Tectona grandis (39.37) is the species with the highest in the farm zone Terminalia ivorensis (2.91) recorded the least. Combretaceae was identified as the most dominant family across the two zones. This research showed that appraisal of tree stand structure on farmlands is crucial for sustainable agroforestry management decisions in the forest zones of Nigeria.
   </abstract>
   <kwd-group> 
    <kwd>
     Agroforestry
    </kwd> 
    <kwd>
      Species Diversity
    </kwd> 
    <kwd>
      Land Use
    </kwd> 
    <kwd>
      Gmelina
    </kwd>
   </kwd-group>
  </article-meta>
 </front>
 <body>
  <sec id="s1">
   <title>1. Introduction</title>
   <p>Trees on Nigerian forest landscapes have undergone different levels of disturbance due to the unprecedented increase in human population <xref ref-type="bibr" rid="scirp.137180-1">
     [1]
    </xref>. This is largely due to the continuous exploitation of forest resources, particularly trees for timber firewood, in an unsustainable manner over the years. Hence, the unsustainable exploitation of trees impacts indigenous knowledge of tree flora and conservation around farming communities in Nigeria <xref ref-type="bibr" rid="scirp.137180-2">
     [2]
    </xref>. A higher number of tree species increases the number of agroecological niches as well as the number of associated species <xref ref-type="bibr" rid="scirp.137180-3">
     [3]
    </xref> <xref ref-type="bibr" rid="scirp.137180-4">
     [4]
    </xref>. Nigeria continues to lose its forest at an unprecedented rate due to poor forest management and weak forest governance; the rapid rate of deforestation in the country is approximately 3.5% per annum, translating into an average loss of about 400,000 ha of forest cover every year to agricultural land expansion, urbanisation, conflicts, and illegal logging <xref ref-type="bibr" rid="scirp.137180-5">
     [5]
    </xref>. According to estimates by the Chatham House Resource Trade Database, charcoal trade in 2015 amounted to 2.6 million tonnes globally, and Nigeria is among the top 5 charcoal-exporting countries <xref ref-type="bibr" rid="scirp.137180-6">
     [6]
    </xref>.</p>
   <p>
    <xref ref-type="bibr" rid="scirp.137180-"></xref>Agroforestry is simply a system of raising tree plants on the same land with food and cash crops and remains a viable alternative in mitigating conversion of forest land for agricultural purposes. Agroforestry can significantly increase food production and boost food security while sustaining biodiversity. Agroforestry offers cheaper options with a wide range of benefits to farmers including increasing agroecology, income and soil fertility <xref ref-type="bibr" rid="scirp.137180-7">
     [7]
    </xref>. To fully explore the potential of agroforestry, as a viable land management, it is important to know the occurrence of agroforestry trees in the community. To ensure that agroforestry continues to serve as a potent land use system it is important to understand the abundance of tree species used in agroforestry practices. It is also essential to examine the status of the species diversity and composition as it will provide guidance for their management and valuable reference for improvement of our knowledge in identification of agroecologically useful woody species. <xref ref-type="bibr" rid="scirp.137180-8">
     [8]
    </xref>. Hence, there is a need to know the difference between the species richness of agroforestry trees in the forest and farmed areas. To do this, this research aimed to determine the diversity and abundance of agroforestry tree species between the forest and farm zones at Edun Forest Reserve in Ogun State, Nigeria. The objectives are to enhance the agrobiodiversity through sustainable agroforestry farming systems by identifying tree species richness around farms in the reserve and to determine the status of agroforestry tree species in farms surrounding the reserve. The research findings would ascertain the status of the most preferred trees on farms in recent times based on the dynamic nature of human consumption. It will also help to reduce agriculture’s production vulnerability to climate change while improving water quality and availability among other ecosystem services, including farmers’ income diversification and access to more nutritious food. Due to time and financial constraints, this research is focused on only Edun Forest reserve and farms within a 100-meter radius of the studied community forest reserve.</p>
  </sec><sec id="s2">
   <title>
    <xref ref-type="bibr" rid="scirp.137180-"></xref>2. Materials and Methods</title>
   <sec id="s2_1">
    <title>2.1. Study Area</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>This study was conducted in Edun Forest Reserve located in Ilaro of Yewa South Local Government, Ogun State, South-West Nigeria. The reserve lies between 6˚47'30.08" latitude and 3˚2'3.01" longitude with an estimated terrain elevation of about 80 meters above sea level.</p>
    <p>The forest reserve shares a boundary with a few native communities in the surrounding area. The communities are predominantly farmers practicing Taungya farming system. Crops cultivated in the reserve are major food crops by the nearby community farmers. Below is the map showing the location of the reserve in Yewa Local Government Area of Ogun State, Nigeria. (<xref ref-type="fig" rid="fig1">
      Figure 1
     </xref>)</p>
    <fig id="fig1" position="float">
     <label>Figure 1</label>
     <caption>
      <title>
       <xref ref-type="bibr" rid="scirp.137180-"></xref>Figure 1. Map of Edun Forest reserve in Ogun state, Nigeria.</title>
     </caption>
     <graphic mimetype="image" position="float" xlink:type="simple" xlink:href="https://html.scirp.org/file/1381667-rId14.jpeg?20241105022801" />
    </fig>
   </sec>
   <sec id="s2_2">
    <title>2.2. Data Collection</title>
    <p>Systematic sampling technique was adopted in sample plot selection in line with <xref ref-type="bibr" rid="scirp.137180-9">
      [9]
     </xref>. Two (2) Transects were laid at an interval 500 m apart with each of the transects representing the Forest and Farm area of the reserve.</p>
    <p>Along each transect 6 plots were laid at an interval of 100 m, making a total of 12 plots with every plot having an area of 50 m × 50 m. See <xref ref-type="fig" rid="fig2">
      Figure 2
     </xref> for the schematic diagram of the line transects layout on the study site.</p>
    <p>In every plot, tree plant data of all trees within the layout were collected. They include Diameter at Breast Height (DBH) at 1.37 m above ground, tree origin, tree height, tree species identification, tree population, taxonomic family and common usage, leaf type were collected. Tree Coordinates of sampled Trees were recorded using Garmin GPS version 73 also each tree’s local names were recorded. Annual and biennial crops planted on the sampled plots were also identified. Only</p>
    <fig id="fig2" position="float">
     <label>Figure 2</label>
     <caption>
      <title>Figure 2. Line-transects of the plot layout in a vertical orientation for each area sampled.</title>
     </caption>
     <graphic mimetype="image" position="float" xlink:type="simple" xlink:href="https://html.scirp.org/file/1381667-rId15.jpeg?20241105022801" />
    </fig>
    <p>trees with a DBH ≥ 10 cm were sampled. Trees with under DBH ≥ 10 cm were considered as shrubs.</p>
    <p>Data were collected using a well-designed Google Form, an Open-Source data gathering tool developed by Google where needed data were inputted.</p>
   </sec>
   <sec id="s2_3">
    <title>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>2.3. Data Analysis</title>
    <p>Based on collected data, Basal Area, Relative Density, Relative Frequency, Relative Dominance of the trees were analysed. The importance value index (IVI) of tree species was also determined as follows:</p>
    <p>
     <math display="inline" xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> 
       <mfrac> 
        <mrow> 
         <mi>
           t 
         </mi> 
         <mo>
           = 
         </mo> 
         <mi>
           d 
         </mi> 
         <msqrt> 
          <mi>
            n 
          </mi> 
         </msqrt> 
        </mrow> 
        <mrow> 
         <mi>
           s 
         </mi> 
         <mi>
           d 
         </mi> 
        </mrow> 
       </mfrac> 
      </mrow> 
     </math></p>
    <p>t = Paired T-test</p>
    <p>d = Mean of the differences</p>
    <p>n = Number of Blocks</p>
    <p>sd = Standard Deviation</p>
    <p>This is the diameter of the tree at 1.37 m above ground level. The Basal Area of trees in the two areas were calculated using the formula.</p>
    <p>
     <math display="inline" xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> 
       <mfrac> 
        <mrow> 
         <mi>
           π 
         </mi> 
         <mi>
           d 
         </mi> 
         <mi>
           b 
         </mi> 
         <msup> 
          <mi>
            h 
          </mi> 
          <mn>
            2 
          </mn> 
         </msup> 
        </mrow> 
        <mn>
          4 
        </mn> 
       </mfrac> 
      </mrow> 
     </math> (1)</p>
    <p>BA = basal area (m<sup>2</sup>), DBH = diameter at breast height (cm), and π = 3.142.</p>
    <p>The total BA for each area was computed by adding all trees BA in the sampled area.</p>
    <p>The relative density represents the index for relative distribution, assessment. It is calculated as follows:</p>
    <p>
     <math display="inline" xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> 
       <mtext>
         RD 
       </mtext> 
       <mo>
         = 
       </mo> 
       <mfrac> 
        <mrow> 
         <msub> 
          <mi>
            t 
          </mi> 
          <mn>
            1 
          </mn> 
         </msub> 
        </mrow> 
        <mi>
          T 
        </mi> 
       </mfrac> 
       <mo>
         × 
       </mo> 
       <mn>
         100 
       </mn> 
      </mrow> 
     </math> (2)</p>
    <p>RD (%) = species relative density</p>
    <p>where t<sub>1</sub> = is the number of individuals of species. T is the total number of all individual trees of all species in the entire community. The tree species are classified based on the relative densities (RD) using the methods in <xref ref-type="bibr" rid="scirp.137180-10">
      [10]
     </xref> and <xref ref-type="bibr" rid="scirp.137180-9">
      [9]
     </xref> as follows:</p>
    <p>Abundant = RD ≥ 5.00;</p>
    <p>Frequent = 4.00 ≤ RD ≤ 4.99;</p>
    <p>Occasional = 3.00 ≤ RD ≤ 3.99;</p>
    <p>Rare = 1.00 ≤ RD ≤ 2.99 and;</p>
    <p>Threatened/Endangered = RD &lt; 1.00.</p>
    <p>Species Relative Dominance RD<sub>0</sub> represents the assessment of relative space occupancy of a tree in a particular area. It is calculated by the formula below:</p>
    <p>
     <math display="inline" xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> 
       <msub> 
        <mrow> 
         <mtext>
           RD 
         </mtext> 
        </mrow> 
        <mn>
          0 
        </mn> 
       </msub> 
       <mo>
         = 
       </mo> 
       <mfrac> 
        <mrow> 
         <mi>
           B 
         </mi> 
         <msub> 
          <mi>
            a 
          </mi> 
          <mi>
            i 
          </mi> 
         </msub> 
        </mrow> 
        <mrow> 
         <mi>
           B 
         </mi> 
         <msub> 
          <mi>
            a 
          </mi> 
          <mi>
            n 
          </mi> 
         </msub> 
        </mrow> 
       </mfrac> 
       <mo>
         × 
       </mo> 
       <mn>
         100 
       </mn> 
      </mrow> 
     </math> (3)</p>
    <p>Ba<sub>i</sub> = sum of basal area of all specific trees in each zone, Ba<sub>n</sub> = Total sum of basal area of all trees for each zone.</p>
    <p>Importance Value Index measures the dominance of a species in a specified area. The tree species Importance Value Index (IVI) was calculated for each area using the following equation:</p>
    <p>
     <math display="inline" xmlns="http://www.w3.org/1998/Math/MathML"> <mrow> 
       <mtext>
         IVI 
       </mtext> 
       <mo>
         = 
       </mo> 
       <mfrac> 
        <mrow> 
         <msub> 
          <mrow> 
           <mtext>
             RD 
           </mtext> 
          </mrow> 
          <mn>
            0 
          </mn> 
         </msub> 
         <mo>
           + 
         </mo> 
         <mtext>
           RD 
         </mtext> 
        </mrow> 
        <mn>
          2 
        </mn> 
       </mfrac> 
      </mrow> 
     </math> (4)</p>
    <p>RD = Relative density,</p>
    <p>RD<sub>0</sub> = Relative dominance</p>
   </sec>
  </sec><sec id="s3">
   <title>
    <xref ref-type="bibr" rid="scirp.137180-"></xref>3. Results</title>
   <sec id="s3_1">
    <title>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>3.1. Agroforestry Species Diversity with Crops</title>
    <p>The different studied forest and farm plots had food crops cultivated at different growth rates. <xref ref-type="table" rid="table1">
      Table 1
     </xref> shows the food crops planted in each sampled plots owned by community farmers around the reserve. Tuber crops (Dioscorea rotundata and Manihot esculentum) are the most common species cultivated on the farmlands.</p>
    <table-wrap id="table1">
     <label>
      <xref ref-type="table" rid="table1">
       Table 1
      </xref></label>
     <caption>
      <title>
       <xref ref-type="bibr" rid="scirp.137180-"></xref>Table 1. Food and cash crops cultivated on the sampled plots.</title>
     </caption>
     <table class="MsoTableGrid custom-table" border="0" cellspacing="0" cellpadding="0"> 
      <tr> 
       <td class="custom-bottom-td acenter" width="16.32%"><p style="text-align:center">Plot</p></td> 
       <td class="custom-bottom-td acenter" width="36.92%"><p style="text-align:center">Forest zone</p></td> 
       <td class="custom-bottom-td acenter" width="46.76%"><p style="text-align:center">Farm zone</p></td> 
      </tr> 
      <tr> 
       <td class="custom-top-td acenter" width="16.32%"><p style="text-align:center">1</p></td> 
       <td class="custom-top-td acenter" width="36.92%"><p style="text-align:center">Dioscorea rotundata</p></td> 
       <td class="custom-top-td acenter" width="46.76%"><p style="text-align:center">Manihot spp; Capsicum spp</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="16.32%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="36.92%"><p style="text-align:center">No crop</p></td> 
       <td class="acenter" width="46.76%"><p style="text-align:center">Dioscorea rotundata</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="16.32%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="36.92%"><p style="text-align:center">No crop</p></td> 
       <td class="acenter" width="46.76%"><p style="text-align:center">Capsicum spp; Ananas comosus</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="16.32%"><p style="text-align:center">4</p></td> 
       <td class="acenter" width="36.92%"><p style="text-align:center">Dioscorea rotundata</p></td> 
       <td class="acenter" width="46.76%"><p style="text-align:center">Manihot spp</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="16.32%"><p style="text-align:center">5</p></td> 
       <td class="acenter" width="36.92%"><p style="text-align:center">Dioscorea rotundata</p></td> 
       <td class="acenter" width="46.76%"><p style="text-align:center">Manihot spp</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="16.32%"><p style="text-align:center">6</p></td> 
       <td class="acenter" width="36.92%"><p style="text-align:center">No crop</p></td> 
       <td class="acenter" width="46.76%"><p style="text-align:center">Manihot spp</p></td> 
      </tr> 
     </table>
    </table-wrap>
    <p>In <xref ref-type="table" rid="table3">
      Table 3
     </xref>, the tree population in each of the forest and farm areas was sampled. A total of 168 trees belonging to 11 families were identified across the studied area. The number of tree species identified in each area differs. A total of 110 trees species belonging to 8 families namely, Fabaceae, Meliaceae, Anacardiaceae, Combretaceae, Lamiaceae, Rubiaceae, Apocynaceae, Malvaceae were recorded in the Forest Area. However, the Farm Area had 58 tree species recorded and belonging to 8 families namely, Anacardiaceae, Meliaceae Caricaceae, Arecaceae, Fabaceae, Lamiaceae, Myrtaceae, Combretaceae. The forest area had more species presence. They include Rubiaceae, Apocynaceae, and Malvaceae were present in Forest Area and not present in the Farm Area of the Reserve while the following species Caricaceae, Arecaceae and Myrtaceae were only present in the Farm Area of the Reserve.</p>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>All the identified trees across the Forest and the Farm Area were classified based on their origin. It was discovered that out of the 168 plants identified in the reserve 122 tree species which represent 72.61% of the sampled trees are exotic while 46 tree species which 27.38% of the entire tree sampled are indigenous.</p>
   </sec>
   <sec id="s3_2">
    <title>3.2. Tree Species Relative Density</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>The Species Relative Density (RD) of the trees in the studied area for both the forest area and the farm area ranged from 0.91% to 30% and 1.72% to 34.48% respectively. Gmelina arborea had the highest (RD) among tree species in the forest area accounting for 30% followed by Tectona grandis and Terminalia ivorensis with RD of 18.18% and 15.45% respectively. Cedrela odorata, Gliricidia sepium and Triplochiton scleroxylon all recorded the least relative density in the forest area, having 0.91% relative density each. In the farm area, Tectona grandis with a relative density of 34.48% had the highest followed by Gmelina arborea with a RD of 29.31%. The following species Caricapa papaya, Elaeis guineensis, Gliricidia sepium and Mangifera indica recorded about 5.17% relative density each. Terminalia ivorensis with a RD of 1.72% recorded the least relative density.</p>
   </sec>
   <sec id="s3_3">
    <title>3.3. Tree Species Relative Dominance</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>On the variability in the species, relative dominance between the two studied areas that the farm area had the highest variability ranging from 3.70% (Caricapa papaya) to 44.3% (Tectona grandis) as against the forest area ranging 0.41% (Cedrela odorata) to 20.07% (Gmelina arborea). Thus, highlighting the unevenness of the species present in both areas. Gmelina arborea (20.07%) is the most dominant tree species in the forest area while Tectona grandis (44.3%) is the most dominant species in the farm area. The choice of Tectona grandis by farmers in the farm area is directly proportional to its leaf harvest for organic food packaging among the communities. The leaf is mainly used for packing “Eko,” which is prepared from ground maize. This means that most preferred tree species by the communities are densely populated in the two studied areas. However, it was observed that Triplochiton scleroxylon had a low RD<sub>0</sub> of 0.72% in the forest area despite the species’ potential to thrive. The dominant families in the studied area include Combretaceae, Lamiaceae and Fabaceae.</p>
   </sec>
   <sec id="s3_4">
    <title>3.4. Tree Species Importance Value Index</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>The Importance Value Index (IVI) indicates how significantly dominant a species is in a specified area. Thus, tree species with the highest IVI represent the dominant tree in such an area. When the two-study areas are compared in <xref ref-type="table" rid="table2">
      Table 2
     </xref>, Gmelina arborea (25.04) has the highest IVI in the forest area while the species with the least IVI is Cedrela odorata (0.661). For the farm area, Tectona grandis (39.37) is the species with the highest IVI while the least IVI is reco RD<sub>0</sub>ed on Terminalia ivorensis (2.91).</p>
   </sec>
   <sec id="s3_5">
    <title>3.5. Tree Species Relative Status</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>Out of the 14 tree species identified in the forest area, five of the species (Anogeissus leiocarpus, Gmelina arborea, Tectona grandis, Terminalia ivorensis, Terminalia superba) observed were under abundant category while Albizzia lebbeck and Khaya ivorensis were classified as under the frequent category. The rare category had Acacia nilotica, Anacardium occidentale and Morinda lucida in the forest area. The endangered species are Cedrela odorata, Gliricidia sepium, Rauvolfia vomitoria and Triplochiton scleroxylon respectively. However, for the Farm Area of the 11 tree species observed only Terminalia ivorensis was rare while species such as Caricapa papaya, Elaeis guineensis, Gliricidia sepium, Gmelina arborea, Mangifera indica, Tectona grandis were all observed to be abundant. Species identified as occasional are Anacardium occidentale, Azadirachta indica, Guajava psidium and Terminalia superba. No species was observed to be frequent or endangered in the farm area of the studied area.</p>
   </sec>
   <sec id="s3_6">
    <title>3.6. Species Richness</title>
    <p>The means of the all trees for each of the 6 blocks sampled and compared using paired student T-test showed that calculated value (3.21) is higher than the tabulated value (2.57) as seen in <xref ref-type="table" rid="table2">
      Table 2
     </xref> below. This indicates the rejection of the null hypothesis (H<sub>0</sub>) that there is no significant difference between the species richness of agroforestry trees in the forest and farm area. Hence, this study clearly shows there is a difference between the species richness of agroforestry trees in the forest area and farm area of Edun Forest Reserve. The difference in species richness is expected to improve the agrobiodiversity potentials of farm communities around forest reserves.</p>
    <table-wrap id="table2">
     <label>
      <xref ref-type="table" rid="table2">
       Table 2
      </xref></label>
     <caption>
      <title>
       <xref ref-type="bibr" rid="scirp.137180-"></xref>Table 2. Means of sampled trees using student t-test.</title>
     </caption>
     <table class="MsoTableGrid custom-table" border="0" cellspacing="0" cellpadding="0"> 
      <tr> 
       <td class="custom-bottom-td acenter" width="11.47%"><p style="text-align:center">Forest area</p></td> 
       <td class="custom-bottom-td acenter" width="8.96%"><p style="text-align:center">Farm area</p></td> 
       <td class="custom-bottom-td acenter" width="9.77%"><p style="text-align:center">Mean diff.</p></td> 
       <td class="custom-bottom-td acenter" width="7.26%"><p style="text-align:center">SD</p></td> 
       <td class="custom-bottom-td acenter" width="17.22%"><p style="text-align:center">No. of blocks (degree of freedom)</p></td> 
       <td class="custom-bottom-td acenter" width="17.22%"><p style="text-align:center">T-test (calculated)</p></td> 
       <td class="custom-bottom-td acenter" width="17.22%"><p style="text-align:center">T-test (tabulated)</p></td> 
       <td class="custom-bottom-td acenter" width="10.86%"><p style="text-align:center">Decision</p></td> 
      </tr> 
      <tr> 
       <td class="custom-top-td acenter" width="11.47%"><p style="text-align:center">22</p></td> 
       <td class="custom-top-td acenter" width="8.96%"><p style="text-align:center">6</p></td> 
       <td class="custom-top-td acenter" width="9.77%"><p style="text-align:center">16</p></td> 
       <td class="custom-top-td acenter" width="7.26%"><p style="text-align:center">6.24</p></td> 
       <td class="custom-top-td acenter" width="17.22%"><p style="text-align:center">6 (5)</p></td> 
       <td class="custom-top-td acenter" width="17.22%"><p style="text-align:center">3.21</p></td> 
       <td class="custom-top-td acenter" width="17.22%"><p style="text-align:center">2.57</p></td> 
       <td class="custom-top-td acenter" width="10.86%"><p style="text-align:center">Reject</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="11.47%"><p style="text-align:center">24</p></td> 
       <td class="acenter" width="8.96%"><p style="text-align:center">11</p></td> 
       <td class="acenter" width="9.77%"><p style="text-align:center">13</p></td> 
       <td class="acenter" width="7.26%"><p style="text-align:center">1.97</p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="10.86%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="11.47%"><p style="text-align:center">27</p></td> 
       <td class="acenter" width="8.96%"><p style="text-align:center">9</p></td> 
       <td class="acenter" width="9.77%"><p style="text-align:center">18</p></td> 
       <td class="acenter" width="7.26%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="10.86%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="11.47%"><p style="text-align:center">14</p></td> 
       <td class="acenter" width="8.96%"><p style="text-align:center">12</p></td> 
       <td class="acenter" width="9.77%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="7.26%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="10.86%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="11.47%"><p style="text-align:center">12</p></td> 
       <td class="acenter" width="8.96%"><p style="text-align:center">9</p></td> 
       <td class="acenter" width="9.77%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="7.26%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="10.86%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="11.47%"><p style="text-align:center">11</p></td> 
       <td class="acenter" width="8.96%"><p style="text-align:center">11</p></td> 
       <td class="acenter" width="9.77%"><p style="text-align:center">0</p></td> 
       <td class="acenter" width="7.26%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="17.22%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="10.86%"><p style="text-align:center"></p></td> 
      </tr> 
     </table>
    </table-wrap>
    <p>Student t-test results; t-calculated = 3.21; t-tabulated (df-5) = 2.57.</p>
    <table-wrap id="table3">
     <label>
      <xref ref-type="table" rid="table3">
       Table 3
      </xref></label>
     <caption>
      <title>
       <xref ref-type="bibr" rid="scirp.137180-"></xref>Table 3. Tree species distribution, relative status in the sampled plots.</title>
     </caption>
     <table class="MsoTableGrid custom-table" border="0" cellspacing="0" cellpadding="0"> 
      <tr> 
       <td class="custom-bottom-td acenter" width="10.63%"><p style="text-align:center">Area</p></td> 
       <td class="custom-bottom-td acenter" width="20.30%"><p style="text-align:center">Tree species</p></td> 
       <td class="custom-bottom-td acenter" width="13.77%"><p style="text-align:center">Family</p></td> 
       <td class="custom-bottom-td acenter" width="13.33%"><p style="text-align:center">Species frquency</p></td> 
       <td class="custom-bottom-td acenter" width="6.84%"><p style="text-align:center">RD</p></td> 
       <td class="custom-bottom-td acenter" width="6.85%"><p style="text-align:center">RD<sub>0</sub></p></td> 
       <td class="custom-bottom-td acenter" width="6.85%"><p style="text-align:center">IVI</p></td> 
       <td class="custom-bottom-td acenter" width="10.89%"><p style="text-align:center">Status</p></td> 
       <td class="custom-bottom-td acenter" width="10.54%"><p style="text-align:center">Total No. trees</p></td> 
      </tr> 
      <tr> 
       <td rowspan="10" class="custom-top-td acenter" width="10.63%"><p style="text-align:center">Forest area</p></td> 
       <td class="custom-top-td acenter" width="20.30%"><p style="text-align:center">Acacia nilotica</p></td> 
       <td class="custom-top-td acenter" width="13.77%"><p style="text-align:center">Fabaceae</p></td> 
       <td class="custom-top-td acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="custom-top-td acenter" width="6.84%"><p style="text-align:center">2.73</p></td> 
       <td class="custom-top-td acenter" width="6.85%"><p style="text-align:center">1.377</p></td> 
       <td class="custom-top-td acenter" width="6.85%"><p style="text-align:center">2.052</p></td> 
       <td class="custom-top-td acenter" width="10.89%"><p style="text-align:center">Rare</p></td> 
       <td class="custom-top-td acenter" width="10.54%"><p style="text-align:center">110</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Albizzia lebbeck</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Fabaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">5</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">4.55</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">3.22</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">3.883</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Frequent</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Anacardium occidentale</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Anacardiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">1.82</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.723</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">1.271</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Rare</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Anogeissus leiocarpus</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Combretaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">8</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">7.27</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.527</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">5.900</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Cedrela odorata</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Meliaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">1</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">0.91</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.413</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.661</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Endangered</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Gliricidia sepium</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Fabaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">1</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">0.91</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.465</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.687</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Endangered</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Gmelina arborea</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Lamiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">33</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">30.00</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">20.069</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">25.035</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Khaya ivorensis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Meliaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">5</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">4.55</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.561</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.553</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Frequent</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Morinda lucida</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Rubiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">2.73</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">1.205</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">1.966</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Rare</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Rauvolfia Vomitoria</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Apocynaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">1</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">0.91</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.43</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.670</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Endangered</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td rowspan="4" class="acenter" width="10.63%"><p style="text-align:center"></p></td> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Tectona grandis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Lamiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">20</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">18.18</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">10.15</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">14.166</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Terminalia ivorensis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Combretaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">17</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">15.45</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">12.014</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">13.734</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Terminalia superba</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Combretaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">10</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">9.09</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">11.773</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">10.432</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Triplochiton scleroxylon</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Malvaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">1</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">0.91</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.723</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">0.816</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Endangered</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td rowspan="11" class="custom-top-td acenter" width="10.63%"><p style="text-align:center">Farm area</p></td> 
       <td class="custom-top-td acenter" width="20.30%"><p style="text-align:center">Anacardium occidentale</p></td> 
       <td class="custom-top-td acenter" width="13.77%"><p style="text-align:center">Anacardiaceae</p></td> 
       <td class="custom-top-td acenter" width="13.33%"><p style="text-align:center">2</p></td> 
       <td class="custom-top-td acenter" width="6.84%"><p style="text-align:center">3.45</p></td> 
       <td class="custom-top-td acenter" width="6.85%"><p style="text-align:center">5.397</p></td> 
       <td class="custom-top-td acenter" width="6.85%"><p style="text-align:center">4.423</p></td> 
       <td class="custom-top-td acenter" width="10.89%"><p style="text-align:center">Occasional</p></td> 
       <td class="custom-top-td acenter" width="10.54%"><p style="text-align:center">58</p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Azadirachta indica</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Meliaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">3.45</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">6.554</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">5.001</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Occasional</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Caricapa papaya</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Caricaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">5.17</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">3.701</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.437</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Elaeis guineensis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Arecaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">5.17</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.241</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.706</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Gliricidia sepium</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Fabaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">5.17</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">7.325</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">6.249</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Gmelina arborea</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Lamiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">17</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">29.31</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">41.712</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">35.511</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Guajava psidium</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Myrtaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">3.45</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">3.932</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">3.690</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Occasional</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Mangifera indica</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Anacardiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">3</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">5.17</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">8.481</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">6.827</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Tectona grandis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Lamiaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">20</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">34.48</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">44.256</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">39.369</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Abundant</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Terminalia ivorensis</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Combretaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">1</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">1.72</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">4.086</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">2.905</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Rare</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
      <tr> 
       <td class="acenter" width="20.30%"><p style="text-align:center">Terminalia superba</p></td> 
       <td class="acenter" width="13.77%"><p style="text-align:center">Combretaceae</p></td> 
       <td class="acenter" width="13.33%"><p style="text-align:center">2</p></td> 
       <td class="acenter" width="6.84%"><p style="text-align:center">3.45</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">8.096</p></td> 
       <td class="acenter" width="6.85%"><p style="text-align:center">5.772</p></td> 
       <td class="acenter" width="10.89%"><p style="text-align:center">Occasional</p></td> 
       <td class="acenter" width="10.54%"><p style="text-align:center"></p></td> 
      </tr> 
     </table>
    </table-wrap>
    <p>The DBH of major trees present in the reserve, as demonstrated in a graph in <xref ref-type="fig" rid="fig3">
      Figure 3
     </xref>, showed that trees in forest area had higher DBH in comparison with trees in the farm area except for Anacardium occidentale (Cashew). This could be attributed to the ability of the tree to provide fruits, thereby improving farmers nutrition and income level. Cashew nut is widely exported from Nigeria to South-Eastern Asian countries.</p>
    <fig id="fig3" position="float">
     <label>Figure 3</label>
     <caption>
      <title>Figure 3. Diameter at Breast Height of most common tree species.</title>
     </caption>
     <graphic mimetype="image" position="float" xlink:type="simple" xlink:href="https://html.scirp.org/file/1381667-rId26.jpeg?20241105022803" />
    </fig>
   </sec>
  </sec><sec id="s4">
   <title>
    <xref ref-type="bibr" rid="scirp.137180-"></xref>4. Discussion</title>
   <sec id="s4_1">
    <title>4.1. Species Diversity</title>
    <p>A total of 168 tree species belonging to 11 families were identified during this study which depicts rich ecosystem in terms of species quality in biodiversity (see <xref ref-type="table" rid="table3">
      Table 3
     </xref>). Tree species identified in the research is quite higher when compared with similar research conducted to determine species biodiversity within similar ecosystems in southwestern part of Nigeria. <xref ref-type="bibr" rid="scirp.137180-11">
      [11]
     </xref> obtained 71 species for Abeku sector of Omo Forest reserve in Ogun State. <xref ref-type="bibr" rid="scirp.137180-12">
      [12]
     </xref> recorded 99 tree species in bitumen-producing area of Ondo State. The results of this study confirmed that Edun Forest Reserve is a repository of both indigenous tropical hardwood and exotic tree species in different families, judging by the tree species richness of the reserve.</p>
    <p>Species such as Acacia nilotica, Morinda lucida, and Terminalia ivorensis were identified as Rare while Cedrela odorata, Gliricidia sepium, Rauvolfia Vomitoria, Triplochiton scleroxylon were identified as Endangered or Threatened during this research. This could be attributed to the effects of a series of human activities on the growth and distribution of tree species which could have played a role in the status of these species in the ecosystem, threatening the occurrence and development of certain species while favouring others.</p>
   </sec>
   <sec id="s4_2">
    <title>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>4.2. Tree Species Diameter at Breast Height</title>
    <p>Diameter at Breast Height (DBH) shows the population structure of trees in the forest <xref ref-type="bibr" rid="scirp.137180-13">
      [13]
     </xref> <xref ref-type="bibr" rid="scirp.137180-14">
      [14]
     </xref>. Tree distribution across different DBHs revealed how well the growing forest is utilizing functional and structural resources, and it is often used to represent the population structure of forests <xref ref-type="bibr" rid="scirp.137180-15">
      [15]
     </xref>.</p>
    <p>Trees in forest areas have higher DBH values when compared with the farm area Gmelina arborea (391,633) and Tectona grandis (229.21) recorded the highest DBH value in the forest area as against Gmelina arborea (186.10) and Tectona grandis (270.36) recorded in the farm area. The only tree in farm area with higher the DBH compared with the forest area is Anacardium occidentale (Cashew) with DBH of 42.89 as against 18.05 DBH in farm area. The DBH value is lower than the value reported by <xref ref-type="bibr" rid="scirp.137180-16">
      [16]
     </xref>. The variation in the DBH identified trees in the farm and forest area is in line with the proposed structure by <xref ref-type="bibr" rid="scirp.137180-17">
      [17]
     </xref> on tropical forest tree species growth structure</p>
   </sec>
   <sec id="s4_3">
    <title>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>4.3. Species Relative Density</title>
    <p>The Relative Density of identified tree species was determined to be in line with <xref ref-type="bibr" rid="scirp.137180-9">
      [9]
     </xref> and <xref ref-type="bibr" rid="scirp.137180-10">
      [10]
     </xref> methodologies. About 20% of the tree species that had a relative density of 1.00 ≤ RD ≤ 2.99 are categorized as Rare, while those with a relative density RD &lt; 1.00 are categorized as threatened/endangered. In the forest area tree species such as Acacia nilotica, Morinda lucida and Terminalia ivorensis with their relative density ranging from 2.73 %, 1.82% and 2.73 respectively are observed to be rare in the Forest Area while Terminalia ivorensis with a relative density of 1.72% was detected to be rare in the farm area of the reserve. The endangered tree species in the farm area are Cedrela odorata, Gliricidia sepium, Rauvolfia Vomitoria and Triplochiton scleroxylon all had a Relative Density of 0.91% each. No species was observed to be endangered in farm Area.</p>
    <p>There is every likelihood that the endangered species may soon be vanishing from the reserve unless sustainable management, such as intensive replanting exercise practices, is adopted. The disappearance such plant species can be attributed to anthropogenic activities resulting in the depletion of genetic resources and increasing threat to Africa’s biodiversity. There is an urgent need to preserve genetic diversity including plant resources of known and unknown economic importance to guarantee the availability of their potential in the interest of human prosperity <xref ref-type="bibr" rid="scirp.137180-18">
      [18]
     </xref>. This is due to the overexploitation and fast replacement of forest ecosystems with human amenities, which has resulted in the decimation of over 70% of tree species in West African landscapes <xref ref-type="bibr" rid="scirp.137180-19">
      [19]
     </xref>.</p>
   </sec>
   <sec id="s4_4">
    <title>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>4.4. Species Relative Dominance</title>
    <p>
     <xref ref-type="bibr" rid="scirp.137180-"></xref>Combretaceae was identified as to be the most dominant family across the two sampled areas. This may be due to their fast regeneration ability, which is associated with symbiotic properties, which may have enabled the species to easily establish within habitat types. This is in contrast to the findings of <xref ref-type="bibr" rid="scirp.137180-20">
      [20]
     </xref>, who stated that trees of legumes were the most prominent species recorded in Takamanda forest and <xref ref-type="bibr" rid="scirp.137180-21">
      [21]
     </xref> report the Fabaceae family is the most family in Ehor Forest Reserve, Edo State despite the fact these forests share some ecosystem characteristics, and geographical boundaries. The dominance Combretaceae could also be a result of habitat adaptation and relatively favourable environmental conditions, which encourage pollination, dispersal and eventual establishment of species. Similar situations were reported by <xref ref-type="bibr" rid="scirp.137180-22">
      [22]
     </xref> on species richness in relation to environment. <xref ref-type="bibr" rid="scirp.137180-23">
      [23]
     </xref> found that edaphic parameters (soil nutrients) played a major role in species richness and establishment in an ecosystem. The effect of climate change-induced anthropogenic activities on regeneration and distribution of tree species in forests could have affected the dominant status of individual species in the agroecosystem, thereby favouring few species over other equally significant species <xref ref-type="bibr" rid="scirp.137180-24">
      [24]
     </xref> <xref ref-type="bibr" rid="scirp.137180-25">
      [25]
     </xref>. However, when the study area was accessed independently Gmelina arborea (20.07%) had the highest Relative Dominance followed by Terminalia ivorensis (12.01%), Terminalia superba (11.78%) and Tectona grandis (10.15%), the least dominant tree species is Cedrela odorata (0.41%). For the farm area, the highest relative dominance is Tectona grandis (44.26%) and Gmelina arborea (41.71), both belonging to the Lamiaceae family. This could be because of the adaptation strategy that relatively favors environmental factors such as dispersal of seeds, pollination of flowers for fruits and establishment of wildlings that eventually become protected and managed species <xref ref-type="bibr" rid="scirp.137180-26">
      [26]
     </xref> <xref ref-type="bibr" rid="scirp.137180-27">
      [27]
     </xref>.</p>
   </sec>
   <sec id="s4_5">
    <title>4.5. Species Importance Value Index (IVI)</title>
    <p>On the Importance Value Index (IVI), economic value was not considered while calculating the average between relative dominance and diversity of species in each area, but similar findings were reported in the species importance value in <xref ref-type="bibr" rid="scirp.137180-28">
      [28]
     </xref> assessment of Fagus orientali species in Iran. <xref ref-type="bibr" rid="scirp.137180-29">
      [29]
     </xref> Their research confirmed wild mango and Cashew as some of the species among 2227 trees sampled with high IVI in the dry tropical landscapes of India. This important index is useful in forest management and biodiversity preservation. As it can be used to improve tree regeneration potential and the adoption of agroforestry on farmlands in dry landscapes using the available resources.</p>
    <p>From the results, the reserve is populated by both indigenous and exotic tree species. However, a recent study by <xref ref-type="bibr" rid="scirp.137180-30">
      [30]
     </xref> agreed that the most dominant exotic species, Gmelina arborea and Tectona grandis are leading the exotic tree species frequency while Terminalia ivorensis and Terminalia superba are the native tree species dominating the reserve. The research found out that the most common trees present in the reserve, Gmelina arborea, Tectona grandis, Guajava psidium (Guava), and Anacardium occidentale (Cashew) are multipurpose in nature, providing income incentives and nutritional and organic value. The increase in agroforestry crops among farmers encroaching reserves such as Cashew nuts is connected to the Nigerian Export Promotion Council (NEPC) factsheet. The NEPC disclosed that Nigeria is the world’s fourth leading exporter of premium quality raw cashew nuts, with an average 48 kernel yield out-turn due to its high nutritional and commercial value.</p>
   </sec>
  </sec><sec id="s5">
   <title>
    <xref ref-type="bibr" rid="scirp.137180-"></xref>5. Conclusion</title>
   <p>The research clearly showed the reserve is rich in biodiversity and needs to be protected through sustainable community forest management, where farmers jointly protect and manage the economic and non-economic trees with forest managers for improved food security and conservation. The appraisal of tree stand structure on farmlands is crucial for sustainable agroforestry management decisions, particularly in the forest zones of Nigeria. Hence, a need for further assessment of agroforestry tree species (with a focus on native species from Fabaceae) to determine diversity and abundance in a changing climate of the transitional agroecological zones.</p>
  </sec>
 </body><back>
  <ref-list>
   <title>References</title>
   <ref id="scirp.137180-ref1">
    <label>1</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Omokaro, G.O., Michael, I. and Evgenievich, P.V. (2024) Assessing the Environmental and Health Implications of Waste Disposal: A Case Study of Africa’s Largest Dumping Site. Journal of Geography, Environment and Earth Science International, 28, 16-30. &gt;https://doi.org/10.9734/jgeesi/2024/v28i5767
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref2">
    <label>2</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Ogwu, M., Osawaru, M. and Obayuwana, O. (2016) Diversity and Abundance of Tree Species in the University of Benin, Benin City, Nigeria. Applied Tropical Agriculture, 21, 46-54.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref3">
    <label>3</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Wunderle, J.M. (1997) The Role of Animal Seed Dispersal in Accelerating Native Forest Regeneration on Degraded Tropical Lands. Forest Ecology and Management, 99, 223-235. &gt;https://doi.org/10.1016/s0378-1127(97)00208-9
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref4">
    <label>4</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Kanowski, J., Catterall, C.P., Wardell-Johnson, G.W., Proctor, H. and Reis, T. (2003) Development of Forest Structure on Cleared Rainforest Land in Eastern Australia under Different Styles of Reforestation. Forest Ecology and Management, 183, 265-280. &gt;https://doi.org/10.1016/s0378-1127(03)00109-9
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref5">
    <label>5</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     FAO (2017) The Future of Food and Agriculture—Trends and Challenges.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref6">
    <label>6</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Wellesley, L., Preston, F., Lehne, J. and Bailey, R. (2017) Chokepoints in Global Food Trade: Assessing the Risk. Research in Transportation Business &amp; Management, 25, 15-28. &gt;https://doi.org/10.1016/j.rtbm.2017.07.007
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref7">
    <label>7</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Garrity, D.P., Akinnifesi, F.K., Ajayi, O.C., Weldesemayat, S.G., Mowo, J.G., Kalinganire, A., et al. (2010) Evergreen Agriculture: A Robust Approach to Sustainable Food Security in Africa. Food Security, 2, 197-214. &gt;https://doi.org/10.1007/s12571-010-0070-7
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref8">
    <label>8</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Suratman, M.N. (2012) Tree Species Diversity and Forest Stand Structure of Pahang National Park, Malaysia. In: Lameed, G.A., Ed., Biodiversity Enrichment in a Diverse World, IntechOpen, 473-492.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref9">
    <label>9</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Adeyemi, A.A., Ibe, A.E. and Okedimma, F.C. (2015) Tree Structural and Species Diversities in Okwangwo Forest, Cross River State, Nigeria. Journal of Research in Forestry, Wildlife and Environment, 7, 36-53. &gt;https://www.ajol.info/index.php/jrfwe/article/viewFile/125058/114591
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref10">
    <label>10</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Edet, D. and Ijeomah, H. (2012) Preliminary Assessment of Tree Species Diversity in Afi Mountain Wildlife Sanctuary, Southern Nigeria. Agriculture and Biology Journal of North America, 3, 486-492. &gt;https://doi.org/10.5251/abjna.2012.3.12.486.492
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref11">
    <label>11</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Ojo, L.O. (2004) The Fate of a Tropical Rainforest in Nigeria: Abeku Sector of Omo Forest Reserve. Global Nest: The International Journal, 6, 116-130.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref12">
    <label>12</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Adekunle, V.A.J. and Olagoke, A.O. (2007) Diversity and Biovolume of Tree Species in Natural Forest Ecosystem in the Bitumen-Producing Area of Ondo State, Nigeria: A Baseline Study. Biodiversity and Conservation, 17, 2735-2755. &gt;https://doi.org/10.1007/s10531-007-9279-y
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref13">
    <label>13</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Bhadra, A.K., Dhal, N.K., Rout, N.C. and Raja, V. (2010) Phytosociology of the Tree Community of Gandhamaran Hill Ranges. The Indian Forester, 136, 610-620.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref14">
    <label>14</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Sahu, S.C., Dhal, N.K. and Mohanty, R.C. (2012) Tree Species Diversity, Distribution and Population Structure in a Tropical Dry Deciduous Forest of Malygiri Hill Ranges, Eastern India. Tropical Ecology, 53, 163-168.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref15">
    <label>15</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Rao, P., Barik, S.K., Pandey, H.N. and Tripathi, R.S. (1990) Community Composition and Tree Population Structure in a Sub-Tropical Broad-Leaved Forest along a Disturbance Gradient. Vegetatio, 88, 151-162. &gt;https://doi.org/10.1007/bf00044832
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref16">
    <label>16</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Adekunle, V.A.J., Olagoke, A.O. and Akindele, S.O. (2013) Tree Species Diversity and Structure of a Nigerian Strict Nature Reserve. Tropical Ecology, 54, 275-289.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref17">
    <label>17</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Husch, B., Beers, T.W. and Kershaw Jr., J.A. (2003) Forest Mensuration. 4th Edition, John Wiley&amp;Sons.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref18">
    <label>18</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Yogom, B.T., Avana-Tientcheu, M., Monthé, F.K., Bissiengou, P., Loumeto, J.J., Zekraoui, L., et al. (2023) Genetic Diversity and Structure in Wild and Cultivated Populations of an Emblematic African Tree Species, Garcinia Kola (Clusiaceae). Tree Genetics &amp; Genomes, 19, Article No. 39. &gt;https://doi.org/10.1007/s11295-023-01614-w
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref19">
    <label>19</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     FAO (2022) FRA 2020 Remote Sensing Survey. FAO Forestry Paper No. 186. &gt;https://doi.org/10.4060/cb9970en
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref20">
    <label>20</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Rol, N. (2013) Species Composition, Diversity and Distribution in a Disturbed Takamanda Rainforest, South West, Cameroon. African Journal of Plant Science, 7, 577-585. &gt;https://doi.org/10.5897/ajps2013.1107
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref21">
    <label>21</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Iheyen, J., Okoegwale, E.E. and Mensah, J.K. (2009) Composition of Tree Species in Ehor Forest Reserve, Edo State, Nigeria. Nature and Science, 7, 8-18.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref22">
    <label>22</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Pausas, J.G. and Austin, M.P. (2001) Patterns of Plant Species Richness in Relation to Different Environments: An Appraisal. Journal of Vegetation Science, 12, 153-166. &gt;https://doi.org/10.2307/3236601
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref23">
    <label>23</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Bui, E.N. (2013) Soil Salinity: A Neglected Factor in Plant Ecology and Biogeography. Journal of Arid Environments, 92, 14-25. &gt;https://doi.org/10.1016/j.jaridenv.2012.12.014
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref24">
    <label>24</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Bainbridge, D.A. (2007) A Guide for Desert and Dry Land Restoration. Island Press.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref25">
    <label>25</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Miller, D.C., Muñoz-Mora, J.C. and Christiaensen, L. (2017) Prevalence, Economic Contribution, and Determinants of Trees on Farms across Sub-Saharan Africa. Forest Policy and Economics, 84, 47-61. &gt;https://doi.org/10.1016/j.forpol.2016.12.005
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref26">
    <label>26</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Jalloh, A., Roy-Macauley, H. and Sereme, P. (2012) Major Agro-Ecosystems of West and Central Africa: Brief Description, Species Richness, Management, Environmental Limitations and Concerns. Agriculture, Ecosystems &amp; Environment, 157, 5-16. &gt;https://doi.org/10.1016/j.agee.2011.11.019
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref27">
    <label>27</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Leakey, R.R.B. (2014) The Role of Trees in Agroecology and Sustainable Agriculture in the Tropics. Annual Review of Phytopathology, 52, 113-133. &gt;https://doi.org/10.1146/annurev-phyto-102313-045838
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref28">
    <label>28</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Razavi, S.M., Mattaji, A., Rahmani, R. and Naghavi, F. (2012) The Assessment of Plant Species Importance Value (SIV) in Beech (Fagus orientalis) Forests of Iran (a Case Study: Nav District 2 of Asalem, Guilan Province). International Research Journal of Applied and Basic Sciences, 3, 433-439.
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref29">
    <label>29</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Naidu, M.T. and Kumar, O.A. (2016) Tree Diversity, Stand Structure, and Community Composition of Tropical Forests in Eastern Ghats of Andhra Pradesh, India. Journal of Asia-Pacific Biodiversity, 9, 328-334. &gt;https://doi.org/10.1016/j.japb.2016.03.019
    </mixed-citation>
   </ref>
   <ref id="scirp.137180-ref30">
    <label>30</label>
    <mixed-citation publication-type="other" xlink:type="simple">
     Fuwape, J.A., Onyekwelu, J.C. and Adekunle, V.A.J. (2001) Biomass Equations and Estimation for Gmelina Arborea and Nauclea diderrichii Stands in Akure Forest Reserve. Biomass and Bioenergy, 21, 401-405. &gt;https://doi.org/10.1016/s0961-9534(01)00036-8
    </mixed-citation>
   </ref>
  </ref-list>
 </back>
</article>