<?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">AJPS</journal-id><journal-title-group><journal-title>American Journal of Plant Sciences</journal-title></journal-title-group><issn pub-type="epub">2158-2742</issn><publisher><publisher-name>Scientific Research Publishing</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.4236/ajps.2022.138077</article-id><article-id pub-id-type="publisher-id">AJPS-119429</article-id><article-categories><subj-group subj-group-type="heading"><subject>Articles</subject></subj-group><subj-group subj-group-type="Discipline-v2"><subject>Biomedical&amp;Life Sciences</subject></subj-group></article-categories><title-group><article-title>
 
 
  Taxonomic Diversity and Structure of Gastropods in Stations at &lt;i&gt;Salvia officinalis&lt;/i&gt; L. (Lamiaceae) in the Gardens of Tlemcen Park (Tlemcen Mounts, Algeria)
 
</article-title></title-group><contrib-group><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Amina</surname><given-names>Damerdji</given-names></name><xref ref-type="aff" rid="aff1"><sub>1</sub></xref></contrib></contrib-group><aff id="aff1"><label>1</label><addr-line>Laboratory of Research: “Valorization of Human Actions for Environmental Protection and Application in Public Health”, Department of Ecology and Environment, Faculty S.N.V/S.T.U., University of Tlemcen, Tlemcen, Algeria</addr-line></aff><pub-date pub-type="epub"><day>29</day><month>07</month><year>2022</year></pub-date><volume>13</volume><issue>08</issue><fpage>1145</fpage><lpage>1157</lpage><history><date date-type="received"><day>16,</day>	<month>May</month>	<year>2022</year></date><date date-type="rev-recd"><day>23,</day>	<month>August</month>	<year>2022</year>	</date><date date-type="accepted"><day>26,</day>	<month>August</month>	<year>2022</year></date></history><permissions><copyright-statement>&#169; 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><p>
 
 
  The Tlemcen region is located in north-western Algeria and is characterized by a semi-arid bioclimate. An approach to the diversity of the malacofauna associated with 
  Salvia 
  officinalis was carried out in three stations belonging to this area from February to June 2015. The specific richness of the Gastropods is 9 divided into three families: Milacidae, Helicidae and Subulinidae. The second includes two subfamilies including that of Helicinae and that of Helicellinae. Two species are constant, 01 is incidental and the 06 others are very accidental. The relative importance of snails fluctuates according to the stations and according to the months and the seasons. In winter, in the first station the malacological richness is equal to 6. In February, the specific richness is relatively important in the 2nd station with a value equal to 7. 
  Milax 
  nigricans (Milacidae) has a frequency of 10% in station 1 and has a density of 0.1 in this same station. It is absent in the other two stations. 
  Euparypha 
  pisana has a frequency of 60% in station 3 and an abundance of 0.57 in this same station.
 
</p></abstract><kwd-group><kwd>&lt;i&gt;Salvia officinalis&lt;/i&gt;</kwd><kwd> Malacofauna</kwd><kwd> Diversity</kwd><kwd> Bioecology</kwd><kwd> Seasons</kwd><kwd> Months</kwd><kwd> Vertical Distribution</kwd><kwd> Garden’s Park of Tlemcen</kwd></kwd-group></article-meta></front><body><sec id="s1"><title>1. Introduction</title><p>Regarding the work on wildlife in the Tlemcen region, several of them have been undertaken on different species of host plants. In fact, in the steppe region located south of Tlemcen, a bioecological study on the fauna of Stipa tenacissima L. (Poaceae) including in particular Gastropods [<xref ref-type="bibr" rid="scirp.119429-ref1">1</xref>] preceded a publication on Arthropods in the same region [<xref ref-type="bibr" rid="scirp.119429-ref2">2</xref>]. Bioecological studies on fauna are subsequently undertaken on Ampelodesma mauritanicum in the Tlemcen region by DAMERDJI and ADJLANI [<xref ref-type="bibr" rid="scirp.119429-ref3">3</xref>] and DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref4">4</xref>], on the doum Chamaerops humilis still around Tlemcen by DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref5">5</xref>] and DAMERDJI and BOUHELLOU [<xref ref-type="bibr" rid="scirp.119429-ref6">6</xref>]. On Thyme, Thymus ciliatus Desf. (Labiatae) a study is made on the malacofauna by DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref7">7</xref>]. On Broom (Fabaceae), a malacological study is carried out by DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref8">8</xref>]. On the other hand, in the park’s gardens, very little work concerning wildlife has been carried out.</p><p>Authors have worked on the taxonomy and biogeoraphy of gastropods from the Iberian Peninsula and the Balearic Islands [<xref ref-type="bibr" rid="scirp.119429-ref9">9</xref>] [<xref ref-type="bibr" rid="scirp.119429-ref10">10</xref>] [<xref ref-type="bibr" rid="scirp.119429-ref11">11</xref>]. Other authors have carried out studies on terrestrial molluscs in very specific regions such as the Najerilla valley [<xref ref-type="bibr" rid="scirp.119429-ref12">12</xref>] and the municipality of Valence [<xref ref-type="bibr" rid="scirp.119429-ref13">13</xref>] [<xref ref-type="bibr" rid="scirp.119429-ref14">14</xref>]. GOMEZ [<xref ref-type="bibr" rid="scirp.119429-ref9">9</xref>] has drawn up a catalog of species from the Iberian region. BIGOT and AGUESSE [<xref ref-type="bibr" rid="scirp.119429-ref15">15</xref>] deal with structural variations of 7 Mediterranean ecosystems highly characteristic of the Rh&#244;ne delta (Camargue).</p><p>On the malacofauna proper, DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref16">16</xref>] examines a bioecological study in the steppe zone of the region of Tlemcen, work that the author completes at the level of the Tlemcen Mountains [<xref ref-type="bibr" rid="scirp.119429-ref17">17</xref>] and taking into consideration the impact of edapho-climatic factors on the conchology characteristics of the terrestrial malacological population in the same region [<xref ref-type="bibr" rid="scirp.119429-ref18">18</xref>] Here again, no work has been done on the Gastropods living on Salvia officinalis, a plant of medical interest. This gap justifies the present work.</p></sec><sec id="s2"><title>2. Methodology</title><p>Three parts are presented, the first concerns the choice of plant material, the second the presentation of the study stations and the third the adopted methodology which includes first the field work and then the techniques used to exploit the results obtained.</p><sec id="s2_1"><title>2.1. Choice of Plant Material</title><p>Sage is a perennial plant with a woody stem at the base, forming a bush sometimes exceeding 80 cm, green-whitish branches. The leaves are quite large, thick, green-whitish, and opposite; the light purplish blue flowers in loose terminal spikes, arranged by 3 to 6 in spaced whorls. The bell-shaped calyx has 5 long teeth and upper bilabial corolla in helmet and lower trilobed lip. The root of the sage is brownish and fibrous. The stem, 20 to 30 cm high, is very branchy. The leaves are opposite oblong to oval, stiff, with rounded teeth, gray blue to gray green, tomentose and decussate, velvety to the touch, thick but soft. They are up to 7 cm long. Persistent, they fall if the winter is very harsh.</p><p>The flowers are arranged in 6 to 8 whorls of 4 to 10 flowers and inflorescence on the spike. They are large (20 to 35 mm long), bilabial, with short peduncles, pale or dark purple, sometimes pink or white.</p><p>The fruit, in the shape of a tetrakene, is invisible, composed of fine green marbles lodged at the bottom of the involucre as soon as flowering; they will quickly turn into black seeds.</p><p>According to GUIGNARD and DUPONT [<xref ref-type="bibr" rid="scirp.119429-ref19">19</xref>] the systematic position of sage is as follows:</p><p>Branch Spermaphytes</p><p>sub-Branch. Angiosperm</p><p>Class.Eudicots</p><p>sub Class. Asteridae</p><p>Order. Lamiales</p><p>Family. Lamiaceae</p><p>Genus. Salvius</p><p>Genus species. Salvius officinalis</p><p>French name: Spanish sage, Lavender leaf sage</p><p>Arabic name: El Mayramiya, Khzyet Djourh&#226;t</p></sec><sec id="s2_2"><title>2.2. Choice of Study Stations</title><p>The choice of stations is made taking into account the presence but above all the abundance of Salvia officinalis. Other factors were taken into account (altitude, slope).</p><p>Station 1:</p><p>This station is located northeast of the national park garden with an exposure of 34˚52'02.08'' North 1˚19'08.72'' West, it represents a slope of about 0.8%, an approximate altitude of 1290 m and a recovery rate of 65% - 75%.</p><p>The plant species which dominate station 1 are: Salvia officinalis L. (Lamiaceae); Euonymus japonicus L. (Celastraceae); Lavandula angustifolia L. (Lamiaceae); Cupressus sempervirens L. (Cupressaceae).</p><p>Station 2:</p><p>This station is located east of the national park garden with an exposure of 34˚51.59.34'' North 1˚19'08.30'' West, it represents a slope of about 0.8% with an approximate altitude of 1290 m and an estimated recovery rate of 75%. The plant species which dominate station 2 are: Salvia officinalis L. (Lamiaceae); Euonymus japonicus L. (Celastraceae); Senecio cineraria L. (Asteraceae); Pinus pinea L. (Pinaceae).</p><p>Station 3:</p><p>This station is located south of the national park garden with an exposure of 34˚51'55.00'' North 1˚19'19.00'' West, it represents a slope of about 0.8% with an approximate altitude of 1290 m and a rate of 60% recovery. The plant species which dominate station 3 are: Salvia officinalis L. (Lamiaceae); Chamaeropshumilis L. (Arecaceae); Pinus halepensis Mill. (Pinaceae); Cupressus sempervirens L. (Cupressaceae).</p><p>The following <xref ref-type="table" rid="table1">Table 1</xref> indicates the characteristics of the three stations studied.</p><table-wrap id="table1" ><label><xref ref-type="table" rid="table1">Table 1</xref></label><caption><title> Abiotic and biotic data of three prospected stations</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Prospected Stations</th><th align="center" valign="middle" >Slope</th><th align="center" valign="middle" >Altitude</th><th align="center" valign="middle" >Exposition</th><th align="center" valign="middle" >Recovery rate</th></tr></thead><tr><td align="center" valign="middle" >Station 1</td><td align="center" valign="middle" >0.8%</td><td align="center" valign="middle" >1290 m</td><td align="center" valign="middle" >Nord-est</td><td align="center" valign="middle" >65-75%</td></tr><tr><td align="center" valign="middle" >Station 2</td><td align="center" valign="middle" >0.8%</td><td align="center" valign="middle" >1290 m</td><td align="center" valign="middle" >Est</td><td align="center" valign="middle" >75%</td></tr><tr><td align="center" valign="middle" >Station 3</td><td align="center" valign="middle" >0.8%</td><td align="center" valign="middle" >1290 m</td><td align="center" valign="middle" >Sud</td><td align="center" valign="middle" >60%</td></tr></tbody></table></table-wrap><p>From a bioclimatic point of view, the stations studied are part of the semi-arid stage in temperate winter.</p></sec><sec id="s2_3"><title>2.3. Methodology</title><p>In the field, 10 samples have been taken since February to June 2015. The samples are brought back to the laboratory where live individuals and empty shells are separated. These are put in plastic bags. Smaller species are kept in generally glass tubes. Morphological and anatomical characters do not have the same importance from a systematic point of view. However, the shape, size, coloring and ornamentation of the shell are taken into account, as many morphological differences can help in the determination. Furthermore, the anatomical characters, in particular of the genital tract, remain determining criteria for the identification of species. In this regard, the morphological description is based on the biosystematic study of the terrestrial pulmonary gastropod molluscs of the Tlemcen region drawn up by DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref20">20</xref>].</p></sec><sec id="s2_4"><title>2.4. Ecological Indices</title><p>Among the ecological composition indices used to exploit the results, mention should be made of the frequency of occurrence, abundance or centesimal frequency.</p><p>The frequency of occurrence of a species is the ratio expressed as a percentage of the number of samples where this species is noted to the total number of samples taken:</p><p>F = P a P &#215; 100</p><p>F is the frequency of occurrence of the species. P<sub>a</sub> is the total number of samples containing the species considered. P is the total number of samples taken. In terms of consistency [<xref ref-type="bibr" rid="scirp.119429-ref21">21</xref>] distinguishes three groups. The species in the first group are qualified as constant when they are found in 50% or more of the surveys carried out in the same community. Those of the second group are incidental because they are only present in 25% to 49% of samples. Finally, accidental species have a frequency of occurrence of less than 25%.</p><p>The relative abundance of a species corresponds to the ratio of the number of individuals of this same species to the total number of individuals of all species combined:</p><p>A r e l = N a N a + N b + N c + N ... &#215; 100</p><p>is the relative abundance of the species considered. Na, Nb, Nc, are the numbers of individuals of species a, b, c.</p><p>The relative abundance provides information on the importance of each species compared to all of the species present.</p><p>The density of a stand is the number of living individuals of all species per unit area.</p><p>D = N P</p><p>D = Density of the species. N = Total number of individuals of a species harvested “a” in the stand considered. P = Total number of samples taken from the stand considered.</p><p>Among the ecological structure indices only the Shannon-Weaver diversity and equity indices are used. The calculation of this index makes it possible to evaluate the fauna diversity of a given environment and to compare among them, the faunas of different environments even when the numbers of individuals collected are very different [<xref ref-type="bibr" rid="scirp.119429-ref21">21</xref>].</p><p>The Shannon-Weaver and evenly distributed indices are expressed by the following formulas:</p><p>H ′ = − ∑ q i log 2 q i</p><p>H ′ max = log 2 S (S = number of species)</p><p>H ′ = Diversity index expressed in bits.</p><p>H ′ max = Maximum diversity expressed in bits.</p><p>Fairness (E) is defined as the ratio of calculated diversity to maximum diversity.</p><p>E = H ′ H ′ max</p></sec></sec><sec id="s3"><title>3. Results</title><p>The results relate to the inventory of gastropods harvested from sage, their relative seasonal and monthly importance, and the calculation of ecological indices and the vertical distribution of these species.</p><sec id="s3_1"><title>3.1. Diversity of Malacological Species Harvested from Salvia officinalis</title><p>Based on the classification of GERMAIN [<xref ref-type="bibr" rid="scirp.119429-ref22">22</xref>] [<xref ref-type="bibr" rid="scirp.119429-ref23">23</xref>] a systematic list of the species found on sage is established.</p><p>The results concerning the inventory of malacological species are recorded in the following list.</p><p>List of pulmonary gastropod species listed on Salvia officinalis in 3 stations</p><p>Milacidae</p><p>Milax nigricans Draparnaud, 1801</p><p>Helicidae</p><p>Helicinae</p><p>Archelix punctata M&#252;ller, 1774</p><p>Euparypha pisana M&#252;ller, 1774</p><p>Helicellinae</p><p>Helicella (Cernuella) virgata Da Costa, 1778</p><p>Helicella (Trocho&#239;dea) pyramidata Draparnaud, 1805</p><p>Helicella (Cernuella) acompsia Bourguignat, 1864</p><p>Helicella terveri Michaud, 1831</p><p>Helicella lauta Lowe, 1831</p><p>Subulinidae</p><p>Rumina decollata Linn&#233;, 1758</p><p>During our outings which spanned from February to June 2015, we met 49 animal species at the 3 stations surveyed. They are grouped into several classes which are: Gastropods, Annelids, Crustaceans, Arachnids, Myriapods and Insects [<xref ref-type="bibr" rid="scirp.119429-ref24">24</xref>]. The specific richness of Gastropods is 9. They are divided into 3 families: Milacidae, Helicidae and Subulinidae. The first family is Milax nigricans. The family of Helicidae comprises two subfamilies: Helicinae with two species belonging to 2 genera namely: Archelix and Euparypha, and that of Helicellinae with 5 species all belonging to the genus Helicella. Rumina decollata represents the family of Subulinidae.</p></sec><sec id="s3_2"><title>3.2. Variations of the Gastropods Found in Depending on the Season</title><p>The results obtained are given in the following <xref ref-type="fig" rid="fig1">Figure 1</xref>.</p><p>In winter, station 1 includes 6 malacological species. The malacological richness is estimated at 3 in the second station and 5 in the third station.</p><p>In spring, the Gastropods are relatively important in the 3<sup>rd</sup> station with a richness equal to 9. The 2<sup>nd</sup> station has eight species. In summer, the climatic conditions becoming drier, the 3 stations include respectively only one species.</p></sec><sec id="s3_3"><title>3.3. Monthly Variations in the Wealth of Gastropods</title><p>The results concerning the monthly size of the Gastropods are given in the following <xref ref-type="fig" rid="fig2">Figure 2</xref>.</p><p>At first glance, the Gastropods seem to be present during the various months of prospecting. In February, the 1<sup>st</sup> presents 7 species. In June, we count only one</p><p>species in each of the stations.</p></sec><sec id="s3_4"><title>3.4. Monthly Variations in the Numbers of Snail Individuals Recorded on Salvia officinalis in the Three Stations</title><p>The results obtained are shown in <xref ref-type="fig" rid="fig3">Figure 3</xref>. They show the importance of the snails month by month, in the 3 stations.</p><p>They have a workforce that varies during the different prospecting months. The fluctuations are between 54 individuals in March and 2 in June in the three stations. It should be noted that the Gastropods decreased in the fifth and sixth month.</p></sec><sec id="s3_5"><title>3.5. Exploitation of the Results by Ecological Indices</title><p>All the malacological species inventoried are taken into account for the calculation of the ecological indices. The results concerning the ecological indices are placed in <xref ref-type="table" rid="table2">Table 2</xref>.</p><sec id="s3_5_1"><title>3.5.1. Application of the Frequency of Occurrence to Snail Species</title><p>Two species of Gastropods are constant, namely: Euparypha pisana and Rumina decollata. Helicella virgata is an accessory species and the 6 others are very accidental including Helicella pyramidata and H. terveri.</p></sec><sec id="s3_5_2"><title>3.5.2. Relative Abundance of Snails</title><p>In the present case, this criterion sheds light on the biology of the malacofauna harvested from sage.</p></sec><sec id="s3_5_3"><title>3.5.3. Diversity or Shannon Index-Weaver</title><p>The data in <xref ref-type="table" rid="table3">Table 3</xref> allows us to calculate the SHANNON-WEAVER index in the 3 stations.</p><table-wrap id="table2" ><label><xref ref-type="table" rid="table2">Table 2</xref></label><caption><title> Relative abundance, frequency of occurrence and density of malacological species observed in the 3 stations</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Stations</th><th align="center" valign="middle"  colspan="3"  >Station1</th><th align="center" valign="middle"  colspan="3"  >Station2</th><th align="center" valign="middle"  colspan="3"  >Station3</th><th align="center" valign="middle"  rowspan="2"  >Moy. (F%)</th><th align="center" valign="middle"  rowspan="2"  >Classe of constance</th></tr></thead><tr><td align="center" valign="middle" >Malacological species</td><td align="center" valign="middle" >A%</td><td align="center" valign="middle" >F%</td><td align="center" valign="middle" >D</td><td align="center" valign="middle" >A%</td><td align="center" valign="middle" >F%</td><td align="center" valign="middle" >D</td><td align="center" valign="middle" >A%</td><td align="center" valign="middle" >F%</td><td align="center" valign="middle" >D</td></tr><tr><td align="center" valign="middle" >Milax nigricans</td><td align="center" valign="middle" >1</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.1</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >3.33</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Archelix punctata</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >1</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.2</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >3.33</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Euparypha pisana</td><td align="center" valign="middle" >0.29</td><td align="center" valign="middle" >50</td><td align="center" valign="middle" >3.2</td><td align="center" valign="middle" >0.14</td><td align="center" valign="middle" >40</td><td align="center" valign="middle" >1.6</td><td align="center" valign="middle" >0.57</td><td align="center" valign="middle" >60</td><td align="center" valign="middle" >6.4</td><td align="center" valign="middle" >50</td><td align="center" valign="middle" >Constant</td></tr><tr><td align="center" valign="middle" >Helicella virgata</td><td align="center" valign="middle" >0.28</td><td align="center" valign="middle" >30</td><td align="center" valign="middle" >1</td><td align="center" valign="middle" >0.22</td><td align="center" valign="middle" >40</td><td align="center" valign="middle" >0.8</td><td align="center" valign="middle" >0.5</td><td align="center" valign="middle" >60</td><td align="center" valign="middle" >1.8</td><td align="center" valign="middle" >43.33</td><td align="center" valign="middle" >Accessory</td></tr><tr><td align="center" valign="middle" >Helicella pyramidata</td><td align="center" valign="middle" >1</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.2</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >3.33</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Helicella acompsia</td><td align="center" valign="middle" >0.29</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.2</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0.71</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.5</td><td align="center" valign="middle" >6.66</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Helicella terveri</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >1</td><td align="center" valign="middle" >20</td><td align="center" valign="middle" >0.3</td><td align="center" valign="middle" >6.66</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Helicella lauta</td><td align="center" valign="middle" >0.5</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.1</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0</td><td align="center" valign="middle" >0.5</td><td align="center" valign="middle" >10</td><td align="center" valign="middle" >0.1</td><td align="center" valign="middle" >6.66</td><td align="center" valign="middle" >Very accidental</td></tr><tr><td align="center" valign="middle" >Rumina decollata</td><td align="center" valign="middle" >0.35</td><td align="center" valign="middle" >70</td><td align="center" valign="middle" >2.1</td><td align="center" valign="middle" >0.42</td><td align="center" valign="middle" >70</td><td align="center" valign="middle" >2.5</td><td align="center" valign="middle" >0.23</td><td align="center" valign="middle" >60</td><td align="center" valign="middle" >1.4</td><td align="center" valign="middle" >66.66</td><td align="center" valign="middle" >Constant</td></tr></tbody></table></table-wrap><table-wrap id="table3" ><label><xref ref-type="table" rid="table3">Table 3</xref></label><caption><title> Numbers, indices ( H ′ , H ′ max , E) of the different malacological species encountered in the three stations</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >STATIONS</th><th align="center" valign="middle" >STATION 1</th><th align="center" valign="middle" >STATION 2</th><th align="center" valign="middle" >STATION 3</th></tr></thead><tr><td align="center" valign="middle" >Total</td><td align="center" valign="middle" >69</td><td align="center" valign="middle" >51</td><td align="center" valign="middle" >105</td></tr><tr><td align="center" valign="middle" >Present species</td><td align="center" valign="middle" >7</td><td align="center" valign="middle" >4</td><td align="center" valign="middle" >6</td></tr><tr><td align="center" valign="middle" >H ′ (bits)</td><td align="center" valign="middle" >2.56</td><td align="center" valign="middle" >1.39</td><td align="center" valign="middle" >2.29</td></tr><tr><td align="center" valign="middle" >H ′ max (bits)</td><td align="center" valign="middle" >2.81</td><td align="center" valign="middle" >2</td><td align="center" valign="middle" >2.58</td></tr><tr><td align="center" valign="middle" >E</td><td align="center" valign="middle" >0.91</td><td align="center" valign="middle" >0.7</td><td align="center" valign="middle" >0.89</td></tr></tbody></table></table-wrap><p>The Shannon-Weaver index is high in the station1. It equals 2.56 in this station. The lowest value of 1.39 is observed in the second station. Seven species are present in the first, six in the third station and 4 species in the second station.</p></sec><sec id="s3_5_4"><title>3.5.4. Evenly Distributed Index Applied to Snail Species</title><p>E: fairness greater than 0.5 tends to 1 for each of the three stations studied. The population of gastropods is in balance. The 1<sup>st</sup> station is slightly more balanced compared to the other two stations (E = 0.91). Therefore, the numbers of different species tend to be in balance with each other.</p></sec></sec><sec id="s3_6"><title>3.6. Vertical Distribution of Gastropods on Salvia officinalis</title><p>The following <xref ref-type="table" rid="table4">Table 4</xref> shows the vertical distribution of the Gastropod species on the sage.</p><p>*At the root level</p><p>Only one malacological species has been found. It is Milax nigricans (Milacidae) which seeks certain humidity at this level.</p><p>*At ground level</p><p>This pedofauna is made up of molluscs which remain a particularly characteristic</p><table-wrap id="table4" ><label><xref ref-type="table" rid="table4">Table 4</xref></label><caption><title> Distribution of malacological species collected on the different strata of Salvia officinalis</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Genus species</th><th align="center" valign="middle" >Root</th><th align="center" valign="middle" >Soil surface</th><th align="center" valign="middle" >Stem</th><th align="center" valign="middle" >Leaves</th></tr></thead><tr><td align="center" valign="middle" >Milax nigricans</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Archelix punctata</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Euparypha pisana</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Helicella virgata</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Helicella pyramidata</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Helicella acompsia</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Helicella terveri</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Helicella lauta</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr><tr><td align="center" valign="middle" >Rumina decollata</td><td align="center" valign="middle" ></td><td align="center" valign="middle" >+</td><td align="center" valign="middle" ></td><td align="center" valign="middle" ></td></tr></tbody></table></table-wrap><p>+: Presence of the species.</p><p>group of this stratum. We meet there Milax gagates but also Archelix punctata and Euparypha pisana (Helicinae, Helicidae) and the 3 species belonging to the genus Helicella (Helicellinae, Helicidae).</p><p>*At the level of the stem</p><p>Gastropods are one of a number (it is mainly Euparypha pisana at the level of the stem. Gastropods manufacture their epiphragms to be able to survive in extreme conditions.</p><p>*At leaf level</p><p>Very rare are the species encountered in this leaf stratum of sage.</p></sec></sec><sec id="s4"><title>4. Discussion</title><p>On Calycotome spinosa in 2008, DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref8">8</xref>] recognized 21 malacological species whereas [<xref ref-type="bibr" rid="scirp.119429-ref7">7</xref>] observes 19 on Thymus ciliatus. On Rosmarinus officinalis (Rosemary) there are 18 species of Gastropods [<xref ref-type="bibr" rid="scirp.119429-ref25">25</xref>].</p><p>In the Tlemcen Mountains, DAMERDJI [<xref ref-type="bibr" rid="scirp.119429-ref17">17</xref>] collected 27 species of snails. Similarly in the steppe zone located south of Tlemcen, DAMERDJI in 1996 [<xref ref-type="bibr" rid="scirp.119429-ref16">16</xref>] has 15 species belonging to the malacofauna while [<xref ref-type="bibr" rid="scirp.119429-ref1">1</xref>] only one was noted with Leucochroa candidissima. This species currently called Sphincterochila candidissima is particularly fond of limestone rocks [<xref ref-type="bibr" rid="scirp.119429-ref20">20</xref>]. The latter shows a strong morphological adaptation for its thick and white test which must protect it from the high temperatures that can prevail in these lawns; it closes in summer with a horny epiphragm, which protects it from diapause. The bioecology of the malacofauna found in 2 stations (Hafir and Zarifelt [<xref ref-type="bibr" rid="scirp.119429-ref26">26</xref>]) in the Tlemcen Mountains indicates the presence of 34 species in Hafir and 19 species in Zarifelt during the years 1999 and 2000. Some particular conchological characters whose size and color distinguish the species liable to rise in altitude [<xref ref-type="bibr" rid="scirp.119429-ref26">26</xref>] During this same period, a study on the distribution of coastal malacological species (Ghazaouet), passing through Tlemcen (urban center), the mountains (Hafir and Zarifelt), Maghnia (plain) to the southernmost area and steppe (El-Aricha) identified 5 common species in these different ecosystems: Sphincterochila candidissima (Sphincterochilidae); Archelix lactea, A. punctata and A. zapharina (Helicidae); and Rumina decollata (Subulinidae).</p><p>It should be noted that 20 species are considered to be specific, including 14 Helicidae [<xref ref-type="bibr" rid="scirp.119429-ref27">27</xref>]. As an example, the 5<sup>th</sup> ecosystem considered (the steppe zone), we find there 2 species of Helicidae (Archelix bailloni and Helicella lemoinei).</p><p>In his quantitative ecology essay on Camargue Sansouire Invertebrates, BIGOT [<xref ref-type="bibr" rid="scirp.119429-ref28">28</xref>] indicates the number of molluscs collected in the main environments of the Camargue. In Sansouire, the specific richness is estimated at 8. Abiotic and biotic factors remain important in the variation in the size of the shells of Sphincterochila candidissima [<xref ref-type="bibr" rid="scirp.119429-ref29">29</xref>]. This species has a high abundance in xerophilic medium as in El-Aricha. However, this is linked to the degradation of the environment [<xref ref-type="bibr" rid="scirp.119429-ref18">18</xref>]. L. candidissima is much localized in Camargue where it is known in the area of the Tour du Valat and its surroundings [<xref ref-type="bibr" rid="scirp.119429-ref30">30</xref>]. The population of L. candidissima in the Camargue tends to show a clear detachment of the turns of its shell [<xref ref-type="bibr" rid="scirp.119429-ref31">31</xref>]. ENGEL [<xref ref-type="bibr" rid="scirp.119429-ref32">32</xref>] indicates its presence mainly in the low and salty Sansouire with Arthrocnemum glaucum.</p><p>On the other hand, E. pisana is common throughout the Camargue where its tests are collected under the Salicornia fruticosa and harbor many invertebrates [<xref ref-type="bibr" rid="scirp.119429-ref30">30</xref>]. On the other hand, the impact of the edapho factors has been demonstrated -climate on the conchology characters of the population of terrestrial gastropods in the region of Tlemcen [<xref ref-type="bibr" rid="scirp.119429-ref18">18</xref>]. According to BIGOT [<xref ref-type="bibr" rid="scirp.119429-ref33">33</xref>] an important fauna representing the major part of the orders of Invertebrates and almost all the orders of known insects in Camargue, took refuge in the empty shells. These tests play a big role as shelters. Wildlife finds an ideal refuge there from the cold winter temperatures and from the heat wave. These tests are also used as a food source, or even as a place for lay and metamorphosis. In 1971 SACCHI [<xref ref-type="bibr" rid="scirp.119429-ref34">34</xref>] studied the comparative ecology of pulmonary gastropods from the Mediterranean and Atlantic dunes.</p><p>At the same time, it should be noted that [<xref ref-type="bibr" rid="scirp.119429-ref5">5</xref>] found that in winter, the specific richness of snails is high on Chamaeropshumilis with 12 species. In addition, Macularia hieroglyphicula also is in winter on the Diss [<xref ref-type="bibr" rid="scirp.119429-ref4">4</xref>].</p><p>On Rosemary, the fluctuations are between 125 individuals in April and 31 in December [<xref ref-type="bibr" rid="scirp.119429-ref25">25</xref>].</p><p>The phenomenon of “clusters” is an adaptive mark pushed towards the environment for species that are not very resistant to the isolated state. It occurs every year in the Rh&#244;ne delta for at least 2 or 3 weeks and sometimes over several months [<xref ref-type="bibr" rid="scirp.119429-ref15">15</xref>].</p><p>On Rosemary, DAMERDJI et al. [<xref ref-type="bibr" rid="scirp.119429-ref25">25</xref>] find the high diversity index in the 3<sup>rd</sup> station which decreases in the 1<sup>st</sup> station. The largest population concerns Euparypha pisana with 137 individuals in the 1<sup>st</sup> station and 212 individuals in the 3<sup>rd</sup> station. DAMERDJI et al. [<xref ref-type="bibr" rid="scirp.119429-ref25">25</xref>] found the highest equal distribution in the third station in Rosemary.</p><p>At ground level, the majority of the inventoried Gastropods are found there. Macularia, Archelix (Helicidae) and Milax gagates are counted among the pedofauna [<xref ref-type="bibr" rid="scirp.119429-ref3">3</xref>]. At the Diss stem, 4 species of Gastropods are noted. These species use this part of the plant to make their epiphragm and settle there [<xref ref-type="bibr" rid="scirp.119429-ref4">4</xref>]. Only the species Euparypha pisana, difficult to recognize with its polymorphism is found on the stipe of the doum [<xref ref-type="bibr" rid="scirp.119429-ref5">5</xref>].</p><p>On the diss, we found 2 species of Helicidae considered as phytophagous. According to KHELIL [<xref ref-type="bibr" rid="scirp.119429-ref2">2</xref>], individuals of Leucochroa candidissima are consumers of alfa foliage. On the Doum, the leaf surface being rough, the Gastropods manufacture their epiphragms to be able to survive in extreme conditions. On the Sage, very rare are the malacological species found on the limbus.</p></sec><sec id="s5"><title>5. Conclusion</title><p>The bioecological study of the malacological fauna of Salvia officinalis in the 3 stations of the Tlemcen Parc enabled us to inventory 9 species during the samples taken from February to June 2015. In spring, station 3 has a specific richness equal to 9. Gastropods are found everywhere except during the month of June. In terms of staff, this is the 3<sup>rd</sup> station and in March we meet the maximum number of samples. Of the 9 malacological species analyzed, 2 are constant, 1 accessory and the other 6 very accidental. The SHANNON-WEAVER index calculation varies between 1.39 and 2.56 bits. It is the weakest in the 2nd station. The even distribution (between 0.7 and 0.91) indicates a balance between the numbers of the different species present. With regard to the distribution of Gastropods on sage, all of the inventoried species are found on the ground. Finally, if a certain number of results were released during this study, many points remain to be clarified, in particular the relation between the trophic level and the malacofauna which is listed there.</p></sec><sec id="s6"><title>Conflicts of Interest</title><p>The author declares no conflicts of interest regarding the publication of this paper.</p></sec><sec id="s7"><title>Cite this paper</title><p>Damerdji, A. (2022) Taxonomic Diversity and Structure of Gastropods in Stations at Salvia officinalis L. (Lamiaceae) in the Gardens of Tlemcen Park (Tlemcen Mounts, Algeria). American Journal of Plant Sciences, 13, 1145-1157. https://doi.org/10.4236/ajps.2022.138077</p></sec></body><back><ref-list><title>References</title><ref id="scirp.119429-ref1"><label>1</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (1997) Impact des facteurs édapho-climatiques sur les caractères conchyliologiques du peuplement malacologique terrestre dans la région de Tlemcen. 4ème Colloque National, A.R.C.E., Oran, 24-25 décembre 1997, 8 p.</mixed-citation></ref><ref id="scirp.119429-ref2"><label>2</label><mixed-citation publication-type="book" xlink:type="simple">Guignard, J.L. and Dupont, F. (2007) Abrégé botanique-systématique moléculaire. Ed. Masson SAS, Paris, 187-189.</mixed-citation></ref><ref id="scirp.119429-ref3"><label>3</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (1990) Contribution à l’étude biosystématique des Mollusques Gastéropodes Pulmonés terrestres de la région de Tlemcen. Thèse Magister, Institut de Biologie, Université de Tlemcen, Tlemcen, 205 p.</mixed-citation></ref><ref id="scirp.119429-ref4"><label>4</label><mixed-citation publication-type="book" xlink:type="simple">Dajoz, R. (1985) Précis d’écologie. Ed. Bordas, Paris, 505 p.</mixed-citation></ref><ref id="scirp.119429-ref5"><label>5</label><mixed-citation publication-type="other" xlink:type="simple">Germain, L. (1969) Mollusques terrestres et fluviatiles. Kraus, Nendeln, Liechtenstein, 21, 477 p.</mixed-citation></ref><ref id="scirp.119429-ref6"><label>6</label><mixed-citation publication-type="other" xlink:type="simple">Germain, L. (1969) Mollusques terrestres et fluviatiles. Kraus, Nendeln, Liechtenstein, 22, 240 p.</mixed-citation></ref><ref id="scirp.119429-ref7"><label>7</label><mixed-citation publication-type="other" xlink:type="simple">Belarouci, N. (2015) Contribution à l’étude bio-écologique de la faune des Invertébrés dans les stations à Salvia officinalis L. (Lamiacées) dans le parc de Tlemcen. Mem. Master en Pathologie des Ecosystèmes. Dép. d’Ecol. Envir. Faculté S.N.V/S.T.U Univ., Tlemcen, 90 p.</mixed-citation></ref><ref id="scirp.119429-ref8"><label>8</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A., Ladjmi, L. and Doumandji, S. (2005) Malacofaune associée à Rosmarinus officinalis L. (Labiatae): Inventaire et aper&amp;#231;u bioécologique près de Mansourah (Tlemcen, Algérie). Revue sciences et technologie, Constantine, 23, 11-20.</mixed-citation></ref><ref id="scirp.119429-ref9"><label>9</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (2004) Bioécologie de la malacofaune retrouvée dans 2 stations (Hafir et Zarifelt) des Monts de Tlemcen. Colloque méditerranéen sur la gestion durable des espaces montagnards, Tlemcen, 10 et 11 octobre 2004, 14 p.</mixed-citation></ref><ref id="scirp.119429-ref10"><label>10</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (2004) Répartition des Mollusques Gastéropodes terrestres du littoral vers la steppe dans la région de Tlemcen. Colloque méditerranéen sur la gestion durable des espaces montagnards, Tlemcen, 10 et 11 octobre 2004, 14 p.</mixed-citation></ref><ref id="scirp.119429-ref11"><label>11</label><mixed-citation publication-type="other" xlink:type="simple">Bigot, L. (1965) Essai d’Ecologie quantitative sur les Invertébrés de la Sansouire camarguaise. Imprimerie M. DECLUME, Lons-Le-Saunier, 100 p.</mixed-citation></ref><ref id="scirp.119429-ref12"><label>12</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Damerdji</surname><given-names> A. </given-names></name>,<etal>et al</etal>. (<year>2001</year>)<article-title>Impact des facteurs abiotiques et biotiques sur la taille des coquilles de Sphincterochila candidissima (Mollusca-Sphincterochilidae) dans la région de Tlemcen (Algérie). Revue I.N.R.A.A</article-title><source></source><volume> 9</volume>,<fpage> 101</fpage>-<lpage>109</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref13"><label>13</label><mixed-citation publication-type="other" xlink:type="simple">Aguesse, P. and Bigot, L. (1962) Complément à l’inventaire de la faune camarguaise: Les Mollusques terrestres et des eaux douces et saumatres. (5ème note). Extrait de Terre et Vie, 1, 82-90.</mixed-citation></ref><ref id="scirp.119429-ref14"><label>14</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Altes</surname><given-names> J. </given-names></name>,<etal>et al</etal>. (<year>1956</year>)<article-title>Sur le polymorphisme de la coquille de L. candidissima, modalités et déterminisme</article-title><source> Bulletin Muséum d’Histoire Naturelle</source><volume> 16</volume>,<fpage> 53</fpage>-<lpage>67</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref15"><label>15</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Engel</surname><given-names> H. </given-names></name>,<etal>et al</etal>. (<year>1957</year>)<article-title>Okologisch-faunistiche Studien im Rh&amp;#244;ne-Delta, unter besonderer Berü chsichtigung der Mollusken</article-title><source> Bonner Zoologische Beitr&amp;#228;ge</source><volume> 8</volume>,<fpage> 5</fpage>-<lpage>55</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref16"><label>16</label><mixed-citation publication-type="other" xlink:type="simple">Bigot, L. (1957) Un microclimat important de Camargue: Les coquilles vides de Mollusques. Terre et Vie, 253-258.</mixed-citation></ref><ref id="scirp.119429-ref17"><label>17</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Sacchi</surname><given-names> C.F. </given-names></name>,<etal>et al</etal>. (<year>1971</year>)<article-title>Ecologie comparée des Gastéropodes Pulmonés des dunes méditerranéennes et atlantiques</article-title><source> Natura</source><volume> 62</volume>,<fpage> 277</fpage>-<lpage>358</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref18"><label>18</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (1997) Etude de la faune malacologique des Monts de Tlemcen: Inventaire-Aper&amp;#231;u écologique répartition. 1ères journées d’étude sur l’agriculture de montagne, Mascara, 13-14 mai 1997.</mixed-citation></ref><ref id="scirp.119429-ref19"><label>19</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (1996) Contribution à l’étude bio-écologique de la malacofaune dans la zone steppique de la région de Tlemcen (Algérie). Congrès International EcoDev., Adrar, 13-16 novembre 1996, 11 p.</mixed-citation></ref><ref id="scirp.119429-ref20"><label>20</label><mixed-citation publication-type="other" xlink:type="simple">Bigot, L. and Aguesse, P. (1984) Considération sur les adaptations de la faune des Invertébrés aux conditions particulières de fonctionnement des écosystèmes d’un Delta méditerranéen (la Camargue ou delta du Rh&amp;#244;ne). Bulletin du Muséum national d’histoire naturelle, 44, 7-17.</mixed-citation></ref><ref id="scirp.119429-ref21"><label>21</label><mixed-citation publication-type="other" xlink:type="simple">Martinez-Orti, A. (1999) Moluscos terrestres testaceos de la comunidad Valenciana. Tesis Doctoral, Universtat de Valencia, Valencia, 743 p.</mixed-citation></ref><ref id="scirp.119429-ref22"><label>22</label><mixed-citation publication-type="other" xlink:type="simple">Ondina, P. (1988) Gasteropodos terrestres de A Coruna y Pontevedra. Tesis Doctoral, Universitat De Santiago, Santiago, 386 p.</mixed-citation></ref><ref id="scirp.119429-ref23"><label>23</label><mixed-citation publication-type="other" xlink:type="simple">Ortiz de Zarate, A. (1991) Descripcion de los Moluscos terrestres del Valle del Najerilla. Gobierno de la Rioja: Consejena de Educacion Cultura y Deportes, Logrono, 400 p.</mixed-citation></ref><ref id="scirp.119429-ref24"><label>24</label><mixed-citation publication-type="other" xlink:type="simple">Puente, A.I. (1997) Estudio taxonomico y biogeografico de la Superfamilia Helicoidea Rafinesque, 1815 (Gastropoda: Pulmonata: Stylommatophora) de la Peninsula Iberica e Islas Baleares. Tesis Doctoral, (U.P.V./E.M.U.), 970 p. + 33 lam.</mixed-citation></ref><ref id="scirp.119429-ref25"><label>25</label><mixed-citation publication-type="other" xlink:type="simple">Altonaga, K., Gomez, B., Martin, R., Prieto, C.E., Puente, A.I. and Rallo, A. (1994) Estudio fainistico y biogeografico de los Moluscos terrestres del norte de la Peninsula Iberica. Parlamento Vasco, Vitoria, 503 p.</mixed-citation></ref><ref id="scirp.119429-ref26"><label>26</label><mixed-citation publication-type="other" xlink:type="simple">Gomez, B. (1988) Estudio sistematico y biogeografico de los Moluscos terrestres del Suborden Orthurethra (Gastropoda: Pulmonata: Stylommatophora) del Pais Vasco y regiones adyacentes, y catalago de las especias ibericas. Tesis Doctoral, Universitat Pais Vasco, Pais Vasco, 424 p.</mixed-citation></ref><ref id="scirp.119429-ref27"><label>27</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Damerdji</surname><given-names> A. </given-names></name>,<etal>et al</etal>. (<year>2008</year>)<article-title>Diversité et aper&amp;#231;u bio-écologique de la faune malacologique associée au Calycotome spinosa (Genêt) dans les environs de Tlemcen (Algérie)</article-title><source> Bulletin du Musée d’histoire Naturelle</source><volume> 64</volume>,<fpage> 47</fpage>-<lpage>57</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref28"><label>28</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Damerdji</surname><given-names> A. </given-names></name>,<etal>et al</etal>. (<year>2010</year>)<article-title>Composition et structure des Gastéropodes dans des stations à Thymus ciliatus Desf. (Labiatae) dans les alentours de Tlemcen, en Algérie</article-title><source> Afrique Science</source><volume> 6</volume>,<fpage> 13</fpage>-<lpage>29</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref29"><label>29</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. and Bouhellou, B. (2002) Faune des Invertébrés du Doum (Chamaerops humilis L.): Inventaire-Indices écologiques dans la région de Tlemcen (Algérie). Deuxième colloque international des chaires U.N.E.S.C.O.-Gas Natural sur le développement durable du Maghreb: Diversités biologiques, écologiques, culturelles et environnementales, Laghouat, 28-30 avril 2002, 9 p.</mixed-citation></ref><ref id="scirp.119429-ref30"><label>30</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (2002) La malacofaune associée au Doum: Inventaire-Aper&amp;#231;u bioécologique dans la région de Tlemcen (Algérie). II International Congress of European Malacological Societies, Vigo, 9-13 Septembre 2002, 12 p.</mixed-citation></ref><ref id="scirp.119429-ref31"><label>31</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. (2002) Contribution à l’étude bioécologique de la malacofaune du Diss (Ampelodesma mauritanicum) dans la région de Tlemcen (Algérie). II International Congress of European Malacological Societies, Vigo, 9-13 Septembre 2002, 10 p.</mixed-citation></ref><ref id="scirp.119429-ref32"><label>32</label><mixed-citation publication-type="other" xlink:type="simple">Damerdji, A. and Adjlani, M. (1999) Contribution à l’étude biocénotique d’une plante xérophyle: le Diss, en milieu semi-aride (région de Tlemcen). Séminaire Adaptation des Organismes aux milieux steppique et saharien, 24-25 novembre 1999, Alger, 16 p.</mixed-citation></ref><ref id="scirp.119429-ref33"><label>33</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Khelil</surname><given-names> M.A. </given-names></name>,<etal>et al</etal>. (<year>1989</year>)<article-title>Contribution à l’inventaire des Arthropodes de la biocénose de l’Alfa (Stipa tenacissima L., Graminées) dans la région de Tlemcen (Algérie)</article-title><source> La défense des végétaux</source><volume> 257</volume>,<fpage> 19</fpage>-<lpage>24</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.119429-ref34"><label>34</label><mixed-citation publication-type="other" xlink:type="simple">Khelil, M.A. (1984) Bioécologie de la faune alfatière dans la région steppique de Tlemcen. Thèse Magister, Institut National Agronomique, El-Harrach, Alger, n&amp;deg; 9, 68 p.</mixed-citation></ref></ref-list></back></article>