American Journal of Plant Sciences

American Journal of Plant Sciences

ISSN Print: 2158-2742
ISSN Online: 2158-2750
www.scirp.net/journal/ajps
E-mail: [email protected]
"Soybean Seed Co-Inoculation with Bradyrhizobium spp. and Azospirillum brasilense: A New Biotechnological Tool to Improve Yield and Sustainability"
written by Mariangela Hungria, Marco Antonio Nogueira, Ricardo Silva Araujo,
published by American Journal of Plant Sciences, Vol.6 No.6, 2015
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Phenogenetic profile and agronomic contribution of Azospirillum argentinense Az39T, a reference strain for the South American inoculant industry
Microbiological …, 2024
[2] Benefits of soybean co-inoculation with Bradyrhizobium spp. and Azospirillum brasilense: Large-scale validation with farmers in Brazil
European Journal of …, 2024
[3] Phenotypic, genomic and in planta characterization of Bacillus sensu lato for their phosphorus biofertilization and plant growth promotion features in soybean
Microbiological …, 2024
[4] Co‐inoculation of Azospirillum brasilense and late nitrogen fertilization for no‐till soybean production
Agronomy …, 2024
[5] Rhizophagus intraradices and Azospirillum brasilense improve growth of herbaceous plants and soil biological activity in revegetation of a recovering coal-mining …
Brazilian Journal of …, 2024
[6] Influence of native rhizobacteria co‐inoculation and formulation of bacterial inoculants on the growth and yield of common bean (Phaseolus vulgaris L.)
Journal of Sustainable …, 2024
[7] Microbial Inoculants for Improved Soil Nutrient Accessibility and Maintenance of Soil Fertility
Microbial Inoculants …, 2024
[8] Can Azospirillum brasilense compensate part of the phosphate fertilizer in soybean crop by promoting plant growth?
, 2024
[9] Desempenho agronômico da soja em função da aplicação de fertilizantes líquidos via tratamento industrial de sementes, associado a coinoculação com …
Revista Caribeña …, 2024
[10] Desempenho agronômico das plantas e rendimento de grãos em resposta ao tratamento industrial de sementes de soja com diferentes formulações de fertilizantes …
, 2024
[11] Inoculants associated with fertilizers: agronomic increases in bean, soybean and lettuce crops
… A LAS CIENCIAS …, 2024
[12] Analysis of the importance of the inoculation technique in brazilian soybean crop
, 2023
[13] Influence of co-inoculation of Bradyrhizobium japonicum and Pseudomonas fluoresceins on growth of soybean (Glycine max L.)/Utjecaj ko-inokulacije sojevima …
Journal of Central European …, 2023
[14] COMPLEX INOCULATION OF SOYBEANS WITH NODULE BACTERIA BRADYRHIZOBIUM JAPONICUM AS A MEASURE TO OPTIMIZE SYMBIOTIC NITROGEN …
Сільськогосподарська …, 2023
[15] Compatibilidade de microrganismos em campo e in vitro na promoção de crescimento e no manejo de doenças em soja
2023
[16] Coinoculação de rizobactérias com Bradyrhizobium japonicum na mitigação dos efeitos do La Niña na cultura da soja
2023
[17] Soybean Yield and Nitrogen Fixation with N and S Fertilization
2023
[18] Dual inoculation of ACC deaminase-producing Pseudomonas and Bradyrhizobium: A synergistic approach to N2-fixation and salt stress mitigation in soybean
Hara, F Tanaka, 2023
[19] Effect of pH on a Microbial Consortium Strains' Survival and its Modulation Associated to Plant Growth Promotion by Microbes
2023
[20] Influence of co-inoculation of Bradyrhizobium japonicum and Pseudomonas fluorescens on growth of soybean (Glycine max L.)
Journal of Central European …, 2023
[21] Utjecaj ko-inokulacije sojevima Bradyrhizobium japonicum i Pseudomonas fluorescens na rast soje (Glycine max L.).
Journal of Central …, 2023
[22] Biologia, Biotecnologia e Meio Ambiente
2023
[23] Phenotypic and genomic characterization of Bacillus sensu lato for their biofertilization effect and plant growth promotion features in soybean plants
bioRxiv, 2023
[24] Co-inoculation with Azospirillum brasilense promotes growth in forage legumes
Revista Ceres, 2023
[25] In Furrow Co-inoculation of Rhizobia and Azospirilla Influences the Growth and Productivity of the Common Bean
International Journal of Plant …, 2023
[26] Influence of seed co-inoculation with Bradyrhizobium species and Azospirillum brasilense on soybean development in Southern and Southeastern Brazil
African Journal of …, 2023
[27] Co-Inoculation with Bradyrhizobium and Humic Substances Combined with Herbaspirillum seropedicae Promotes Soybean Vegetative Growth and …
Agronomy, 2023
[28] Revealing the Structure Formation on Polyglycerol Citrate Polymers—An Environmentally Friendly Polyester as a Seed-Coating Material
Polymers, 2023
[29] Associative Nitrogen Fixers-Options for Mitigating Climate Change
Bioinoculants: Biological Option for …, 2023
[30] Effect of different methods of inoculation and co-inoculation of Bradyrhizobium spp. and Azospirillum brasilense on soybean agronomic performance in fields with a …
Archives of Agronomy …, 2023
[31] Economic value of biological nitrogen fixation in soybean crops in Brazil
Environmental Technology & …, 2023
[32] Soybean Response to N Fertilization Compared with Co-Inoculation of Bradyrhizobium japonicum and Azospirillum brasilense
Agronomy, 2023
[33] Studies on Endurance of Azospirillum formosense Strains to Osmotic Stress and Modulation of Early Stage Pearl Millet Growth
Applied Biochemistry and Microbiology, 2023
[34] Synergistic N2-fixation and salt stress mitigation in soybean through dual inoculation of ACC deaminase-producing Pseudomonas and Bradyrhizobium
Hara, F Tanaka, AZ Oo… - Scientific Reports, 2023
[35] How did the coinoculation of Bradyrhizobium and Azospirillum become indispensable for soybean production in Brazil?
Symbiosis, 2023
[36] Azospirillum–Bacillus associations: synergistic effects on in vitro PGP traits and growth of pearl millet at early seedling stage under limited moisture conditions
3 Biotech, 2023
[37] Green Manure as an Alternative for Soil Recovery in a Bauxite Mining Environment in Southeast Brazil
Floresta e Ambiente, 2023
[38] INFLUÊNCIA DA APLICAÇÃO DE DOSES DE INOCULANTE NO SULCO DE SEMEADURA SOBRE O DESENVOLVIMENTO E NODULAÇÃO NA CULTURA DA …
… Scientia Rural-ISSN …, 2022
[39] Bacillus thuringiensis RZ2MS9, a tropical plant growth-promoting rhizobacterium, improves maize and soybean growth under field conditions
Revista Agronómica del Noroeste Argentino, 2022
[40] MODELAGEM MATEMÁTICA APLICADA A OTIMIZAÇÃO DE PROCESSOS AGRÍCOLAS: ESTUDO DE CASO APLICADO À UMA PEQUENA PROPRIEDADE …
Revista Scientia Rural …, 2022
[41] Sobrevivência de bactérias diazotróficas em suporte inoculante alternativo de casca de algodão
, 2022
[42] Study of the effect of bacterial-mediated legume plant growth using bacterial strain Serratia marcescens N1. 14 X-45
Frontiers in Microbiology, 2022
[43] Efektifitas Azotobacter sp. dan Pseudomonas sp. sebagai Plant Growth promoting Rhizobacteria (PGPR) terhadap tanaman Tomat (Lycopersicum …
soilrens, 2022
[44] Seed inoculation with Azospirillum brasilense in the US soybean systems
Field Crops …, 2022
[45] Diversified crop rotations increase the yield and economic efficiency of grain production systems
European Journal of …, 2022
[46] Microbiome of Nodules and Roots of Soybean and Common Bean: Searching for Differences Associated with Contrasting Performances in Symbiotic Nitrogen …
International Journal of …, 2022
[47] Bradyrhizobium strains from Brazilian tropical soils promote increases in nodulation, growth and nitrogen fixation in mung bean
Applied Soil …, 2022
[48] The Importance of Microorganisms for Sustainable Agriculture—A Review
Adamska, GB Dąbrowska - Metabolites, 2022
[49] Previous Incubation of Bradyrhizobium japonicum E109 and Azospirillum argentinense Az39 (formerly A. brasilense Az39) Improves the Bradyrhizobium-Soybean …
Journal of Soil Science …, 2022
[50] Microbiological quality analysis of inoculants based on Bradyrhizobium spp. and Azospirillum brasilense produced “on farm” reveals high contamination with …
Brazilian Journal of …, 2022
[51] Effects of Rhizobia Isolated from Coffee Fields in the High Jungle Peruvian Region, Tested on Phaseolus vulgaris L. var. Red Kidney
Paredes, K Ogata-Gutiérrez, D Zúñiga-Dávila - Microorganisms, 2022
[52] Effects of Nitrogen Fertilization on Weed Flora and Productivity of Soybean [Glycine max (L.) Merr.] Crop
Nitrogen, 2022
[53] Co-inoculation with tropical strains of Azospirillum and Bacillus is more efficient than single inoculation for improving plant growth and nutrient uptake in maize
Archives of …, 2022
[54] Bacillus strains with potential for growth promotion and control of white mold in soybean
Biologia, 2022
[55] Ecological performance of multifunctional pesticide tolerant strains of Mesorhizobium sp. in chickpea with recommended pendimethalin, ready-mix of pendimethalin …
Archives of Microbiology, 2022
[56] Brazilian scenario of inoculant production: A look at patents
Revista Brasileira de …, 2022
[57] Combination of Azospirillum and Bradyrhizobium on Inoculant Formulation Improve Nitrogen Biological Fixation in Soybean
Journal of …, 2022
[58] Methods to quantify Bacillus simplex-based inoculant and its effect as a seed treatment on field-grown corn and soybean in Brazil
Journal of Seed …, 2022
[59] Inoculation with Azospirillum combined with nitrogen fertilization in sorghum intercropped with Urochloa in off-season
Revista …, 2022
[60] Nutrient Acquisition and Soil Fertility: Contribution of Rhizosphere Microbiomes in Sustainable Agriculture
Microbial BioTechnology for …, 2022
[61] Fixação biológica do nitrogênio.
2022
[62] Inoculation with Azospirillum combined with nitrogen fertilization in sorghum intercropped with Urochloa in off-season 1
Revista …, 2022
[63] Co-inoculation of Anabaena cylindrica and Azospirillum brasilense during initial growth and chloroplast pigments of corn
Revista Brasileira de …, 2022
[64] Diversidad fenotípica y características bioquímicas de cepas de Rhizobium nodulando el frijol (Phaseolus vulgaris L.).
Qthanin, M Rouissi, B Sifi - BIOAGRO, 2022
[65] Phenotypic diversity and biochemical characteristics of selected rhizobia nodulating the common bean (Phaseolus vulgaris L.)
Qthanin, M Rouissi, B Sifi - Bioagro, 2022
[66] Bacillus thuringiensis RZ2MS9, a tropical plant growth-promoting rhizobacterium, improves maize and soybean growth under field conditions: Bacillus …
Estrada, PP Cavalcanti… - Revista Agronómica …, 2022
[67] Microbiome research as an effective driver of success stories in agrifood systems–a selection of case studies
Frontiers in …, 2022
[68] Avaliação do inoculante líquido brazofix (Bradyrhizobium japonicum+ Azospirillum brasilense) para a cultura da soja (glycine max): Evaluation of brazofix liquid …
Brazilian Journal …, 2022
[69] Bioinsumos na cultura da soja
2022
[70] Aplicação de inoculantes microbianos em espécies herbáceas empregadas na revegetação de áreas de mineração de carvão em recuperação
2022
[71] Efektifitas Azotobacter sp. dan Pseudomonas sp. sebagai Plant Growth promoting Rhizobacteria (PGPR) terhadap tanaman Tomat (Lycopersicum esculentum Mill.) …
soilrens, 2022
[72] Application rates of Azospirillum brasilense in cucumber seeds.
Bulgarian Journal of …, 2022
[73] Implicancias de la interacción triple soja-bradyrizobios-Delftia sp. JD2 sobre la respuesta vegetal
2022
[74] Mitigating abiotic stress: microbiome engineering for improving agricultural production and environmental sustainability
Planta, 2022
[75] Effects of inoculation with plant growth-promoting rhizobacteria from the Brazilian Amazon on the bacterial community associated with maize in field
Estrada… - Applied Soil …, 2022
[76] Fresh compost tea application does not change rhizosphere soil bacterial community structure, and has no effects on soybean growth or yield
Plants, 2021
[77] Legume–rhizobium dance: an agricultural tool that could be improved?
Microbial Biotechnology, 2021
[78] Comparative metabolite analysis of Delftia-Bradyrhizobium co-inoculated soybean plants using UHPLC-HRMS-based metabolomic profiling
Symbiosis, 2021
[79] AVEIA PRETA E AZEVÉM INOCULADAS COM Azospirillum brasilense EM SISTEMA LAVOURA-PECUÁRIA
2021
[80] Outstanding impact of Azospirillum brasilense strains Ab-V5 and Ab-V6 on the Brazilian agriculture: Lessons that farmers are receptive to adopt new …
Revista Brasileira de Ciência …, 2021
[81] Biofertilizers: An ecofriendly technology for nutrient recycling and environmental sustainability
Current Research in Microbial Sciences, 2021
[82] Combining microorganisms in inoculants is agronomically important but industrially challenging: case study of a composite inoculant containing …
2021
[83] Potential use of beneficial microorganisms for soil amelioration, phytopathogen biocontrol, and sustainable crop production in smallholder agroecosystems
2021
[84] Co-inoculation of two symbiotically efcient Bradyrhizobium strains improves cowpea development better than a single bacterium application.
2021
[85] Peanut response to co‐inoculation of Bradyrhizobium spp. and Azospirillum brasilense and molybdenum application in sandy soil of the Brazilian Cerrado
2021
[86] Azospirillum brasilense and compound of phytohormones as biostimulants in Jalo Precoce beans
2021
[87] Inoculação de Azospirillum brasilense, adubação nitrogenada e ecologia molecular microbiana em sistema plantio direto
2021
[88] Isolamento, caracterização e seleção de bactérias associadas a Acacia mangium com potencial para promoção de crescimento em mudas de Eucaliptus urograndis
2021
[89] Outstanding impact of Azospirillum brasilense strains Ab-V5 and Ab-V6 on the Brazilian agriculture: Lessons that farmers are receptive to adopt new microbial …
2021
[90] Meta-analysis reveals benefits of co-inoculation of soybean with Azospirillum brasilense and Bradyrhizobium spp. in Brazil
2021
[91] The challenge of combining high yields with environmentally friendly bioproducts: A review on the compatibility of pesticides with microbial inoculants
2021
[92] Interactions Between Edaphoclimatic Conditions and Plant–Microbial Inoculants and Their Impacts on Plant Growth, Nutrient Uptake, and Yields
2021
[93] BLACK OAT AND RYEGRASS INOCULATED WITH Azospirillum brasilense IN CROP-LIVESTOCK SYSTEM
2021
[94] The state of the art in soybean transcriptomics resources and gene coexpression networks
2021
[95] Co-inoculation of two symbiotically efficient Bradyrhizobium strains improves cowpea development better than a single bacterium application
2021
[96] Facing the communication between soybean plants and microorganisms (Bradyrhizobium and Delftia) by quantitative shotgun proteomics
2021
[97] Plant growth analysis describing the soybean plants response on dryland field to seed co-inoculation
2021
[98] Characterization and nodulation capacity of native bacteria isolated from mung bean nodules used as a trap plant in Brazilian tropical soils
2021
[99] Increase of soybean yield through agricultural practices in Central Brazil
2021
[100] Isolation and Screening of Indigenous Rhizobia from BlackGram Cultivated in Fallow Rice Soils for Plant Growth Promoting Traits
2021
[101] Co-inoculation With Tropical Strains of Azospirillum and Bacillus Is More Efficient Than Single Inoculation for Improving Plant Growth and Nutrient Uptake in …
2021
[102] Effects of fertilization and n-fixing bacterial inoculation on nutrients of coal mine spoil and growth of black locust (Robinia pseudoacacia L.).
2021
[103] The Interaction between Bradyrhizobium Japonicum E109 and Azospirillum Brasilense Az39 Improves Bradyrhizobium-Soybean Symbiosis: The Secrets Behind Co …
2021
[104] Fenotipska karakterizacija autohtonih sojeva rizobija koje noduliraju soju.
Glasnik Zastite …, 2021
[105] The influence of microbial seed treatment inoculants on yield and quality of soybean.
2021
[106] Brief history of biofertilizers in Brazil: From conventional approaches to new biotechnological solutions1
Metabólitos secundários extraídos de rizóbios na …, 2021
[107] Increase of soybean yield through agricultural practices in Central Brazil.
Brazilian Journal of …, 2021
[108] " Innovability" in Brazilian agribusiness.
2021
[109] Inoculante à base de bactérias solubilizadoras de fosfato nas culturas do milho e da soja (BiomaPhos®): dúvidas frequentes e boas práticas de inoculação
2021
[110] Effect of inoculation with Bradyrhizobium and phosphate solubilizing bacteria on soybean seed yield and composition
Srbinović, Đ Kuzmanović, N Rasulić… - Zemljište i …, 2021
[111] The Interaction between Bradyrhizobium Japonicum E109 and Azospirillum Brasilense Az39 Improves Bradyrhizobium-Soybean Symbiosis: The Secrets …
2021
[112] Nitrogen Fertilization in Soybean: Influence on Nutritional Status, Yield Components and Yield
… in Soil Science and …, 2021
[113] Enhancing Mungbean (Vigna radiata L.) Productivity, Soil Health and Profitability through Conjoint Use of Rhizobium and PGPR
Legume …, 2021
[114] The influence of bacterial inoculats on pathogens, yield and quality in soybean crop
AgroLife …, 2021
[115] Development of Biofertilizers and Microbial Consortium an Approach to Sustainable Agriculture Practices
Plant, Soil and Microbes in Tropical …, 2021
[116] Brief history of biofertilizers in Brazil: from conventional approaches to new biotechnological solutions
Brazilian Journal of …, 2021
[117] Real-time PCR method to quantify Sp245 strain of Azospirillum baldaniorum on Brachiaria grasses under field conditions
Plant and Soil, 2021
[118] Inoculação e coinoculação suplementar tardia com Rhizobium tropici e Azospirillum brasilense como estratégias para aumento da nodulação e produtividade do …
2021
[119] Azospirillum Brasilense Application in Pre-Sprouted Seedlings (PSS) of Sugarcane
… e Ciência C …, 2021
[120] Café Liberdade
Madrygal: Revista de Estudios Gallegos, 2021
[121] K-humate as an agricultural alternative to increase nodulation of soybeans inoculated with Bradyrhizobium
Biocatalysis and …, 2021
[122] The effect of soil tillage on symbiotic activity of soybean crops.
Bulgarian Journal of …, 2020
[123] Improvement of faba bean production in salt-affected soils by Rhizobium leguminosarum bv. viciae inoculation and phosphorus application
Akhdar - Situ, 2020
[124] Method for Recovering and Counting Viable Cells from Maize Seeds Inoculated with Azospirillum brasilense.
Journal of Pure & …, 2020
[125] Coinoculação de Bradyrhizobium japonicum e Azospirillum brasilense na qualidade fisiológica de sementes de soja
Torneli… - Semina: Ciências …, 2020
[126] Atributos físicos de um Planossolo Háplico sob sistema de integração lavoura-pecuária-floresta para agricultura familiar no Agreste paraibano
2020
[127] Desempenho do feijoeiro à inoculação com azospirillum brasilense e rhizobium tropici, adubação nitrogenada e molíbdica em condições amazônicas
2020
[128] Adubação nitrogenada em cobertura: fator determinante para elevadas produtividades de feijão comum
Revista Cultura …, 2020
[129] Micro-organismos colonizadores de nódulos de Vigna spp. cultivadas em solos de Caatinga
2020
[130] Co-inoculation of Bradyrhizobium japonicum and Azospirillum brasilense on the physiological quality of soybean seeds.
Torneli, 2020
[131] Performance of beans after inoculation with Azospirillum brasilense and Rhizobium tropici, and nitrogen and molybic fertilizations under amazonian conditions …
2020
[132] Co-inoculation of Bradyrhizobium japonicum and Azospirillum brasilense on the physiological quality of soybean seeds Coinoculação de Bradyrhizobium …
2020
[133] Co-inoculation of Bradyrhizobium japonicum and Azospirillum brasilense on the physiological quality of soybean seeds
2020
[134] Diversidade, mecanismos de atuação e potencial agrícola de bactérias promotoras de crescimento de plantas, usando milho como cultura exemplo
2020
[135] Efeito da co-inoculação de bactérias promotoras de crescimento na cultura da soja
2020
[136] Efecutul rhizobacteriilor benefice asupra formării sistemului simbiotic Glycine Max-Bradyrhizobium Japonicum în funcţie de fertilizare şi nivelul de umiditate a solului
2020
[137] Potencial de rendimento de cultivares modernas de soja na região sudoeste do Paraná
2020
[138] Filogenetska analiza autohtonih sojeva rizobija koje noduliraju soju (Glycine max L.) i njihova simbiozna učinkovitost u uvjetima suše
2020
[139] Plant microbiomes for sustainable agriculture: current research and future challenges
Plant microbiomes for sustainable agriculture, 2020
[140] Effects of plant growth-promoting rhizobacteria on co-inoculation with Bradyrhizobium in soybean crop: a meta-analysis of studies from 1987 to 2018
2020
[141] Plant microbiomes for sustainable agriculture
2020
[142] The Co-inoculation of Rhizobium and Bradyrhizobium Increases the Early Nodulation and Development of Common Beans
2020
[143] Pseudomonas plecoglossicida as a novel bacterium for phosphate solubilizing and indole-3-acetic acid-producing from soybean rhizospheric soils of East Java …
2020
[144] The effect of soil tillage on symbiotic activity of soybean crops
2020
[145] Coinoculation of soybean plants with Bradyrhizobium japonicum and Trichoderma harzianum: coexistence of both microbes and relief of nitrate inhibition of …
2020
[146] Inoculation Methods and Doses and Relationship with the Vegetative and Reproductive Development of Soybeans
2020
[147] Co-inoculation of Anabaena cylindrica with Azospirillum brasilense increases grain yield of maize hybrids
2020
[148] Towards sustainable yield improvement: field inoculation of soybean with Bradyrhizobium and co-inoculation with Azospirillum in Mozambique
2020
[149] Changes in root morphological traits in soybean co-inoculated with Bradyrhizobium spp. and Azospirillum brasilense or treated with A. brasilense exudates
2020
[150] Mechanisms in plant growth‐promoting rhizobacteria that enhance legume–rhizobial symbioses
2020
[151] Impact of pesticides in properties of Bradyrhizobium spp. and in the symbiotic performance with soybean
2020
[152] Microbial Consortium as Biofertilizers for Crops Growing Under the Extreme Habitats
2020
[153] Evaluation of the effect of Azospirillum brasilense inoculation on arabic coffee seedlings
2020
[154] Comprehensive Account of Inoculation and Coinoculation in Soybean
2020
[155] Effect of Fertilization and Bacterial Inoculation on the Growth of Alder (Alnus sibirica) in Coal Mine Soil
2020
[156] Co-Inoculation of Common Bean with Rhizobium and Azospirillum Enhance the Drought Tolerance
2020
[157] Performance of beans after inoculation with azospirillum brasilense and rhizobium tropici, and nitrogen and molybic fertilizations under amazonian conditions
2020
[158] Everything you must know about Azospirillum and its impact on agriculture and beyond
2020
[159] Compatibilidade e eficiência de produtos biológicos no controle de fitopatógenos de solo e desempenho de sementes de soja
2020
[160] INOCULAÇÃO E COINOCULAÇÃO COM Bradyhizobium japonicum E Azospirillum brasilense NA CULTURA DA SOJA
2020
[161] Advances in Plant Microbiome and Sustainable Agriculture
2020
[162] Changes in root morphological traits in soybean co-inoculated with Bradyrhizobium spp. and Azospirillum brasilense or treated with A. brasilense exudates.
2020
[163] Method for recovering and counting viable cells from maize seeds inoculated with Azospirillum brasilense
J. Pure Appl. Microbiol., 2020
[164] Improvement of Faba Bean Production in Saltaffected Soils by Rhizobium leguminosarum bv. viciae Inoculation and Phosphorus Application
2019
[165] Response of maize crop hybrids, with different transgenic events, to inoculation with Azospirillum brasilense
2019
[166] Microbial inoculants: reviewing the past, discussing the present and previewing an outstanding future for the use of beneficial bacteria in agriculture
2019
[167] PRODUTIVIDADE, ACúMULO DE NUTRIENTES E DIVERSIDADE BACTERIANA DA RIZOSFERA DE GENóTIPOS DE MILHO EM RESPOSTA à INOCULA??O COM Azospirillum brasilense
Thesis, 2019
[168] Quorum sensing communication: Bradyrhizobium-Azospirillum interaction via N-acyl-homoserine lactones in the promotion of soybean symbiosis
Journal of Basic Microbiology, 2019
[169] Effectiveness of nitrogen fixation in rhizobia
2019
[170] Influence of Seed Inoculation with Commercial Bacterial Inoculants (Bradyrhizobium Japonicum) on Growth and Yield of Soybean
2019
[171] Quality Attributes of Co-inoculants Based on Rhizobia and Phosphate Solubilizing Bacteria under Different Storage Conditions
IOSR Journal of Agriculture and Veterinary Science (IOSR-JAVS), 2019
[172] Productivity increase, reduction of nitrogen fertiliser use and drought-stress mitigation by inoculation of Marandu grass (Urochloa brizantha) with Azospirillum …
2019
[173] Can co-inoculation of Bradyrhizobium and Azospirillum alleviate adverse effects of drought stress on soybean (Glycine max L. Merrill.)?
2019
[174] Can co-inoculation of Rhizobium tropici and Azospirillum brasilense increase common bean nodulation and grain yield?
2019
[175] Rhizobial Inoculation and Molybdenum Fertilization in Peanut Crops Grown in a No Tillage System After 20 Years of Pasture
2019
[176] Respuesta de soya (Glycine max (L) Merr) a la inoculación con Azospirillum y Bradyrhizobium
2019
[177] ¿ Coinoculación para la producción de soja?: Mirada prospectiva
2019
[178] Path Analysis in Soybean Under Drought Stress and Co-inoculated With Azospirillum brasilense
2019
[179] Applications of Beneficial Microbe in Arid and Semiarid Agroecosystem: IAA-Producing Bacteria
2019
[180] Response of soybean to inoculation with Bradyhrizobia spp. strains: effect on root nodulation, yield and residual soil nitrogen
2019
[181] Quorum sensing communication: Bradyrhizobium-Azospirillum interaction via N-acyl-homoserine lactones in the promotion of soybean symbiosis.
2019
[182] Response of soybean (Glycine max (L) Merr) to inoculation with Azospirillum and Bradyrhizobium.
Casas, J Pérez, F Jerez, 2019
[183] Use of microbial inoculants in cotton.
2019
[184] Avaliação da população de duas espécies diazotróficas associativas em tecidos de braquiária e milho utilizando PCR quantitativa
2019
[185] Soja associada à inoculação e coinoculação de Bradyrhizobium e Azospirillum após cultivos de outono-inverno.
2018
[186] Teor de proteína em grãos de Glycine max influenciados pela inoculação mista de Bradyrhizobium japonicum e Azospirillum brasilense
2018
[187] IMPACT OF ENDO-NODULE FLUORESCENT PSEUDOMONAS AND RHIZOBIA ON ROOT ROTTING FUNGI AND GROWTH OF SOYBEAN (GLYCINE MAX L …
2018
[188] Plant Probiotics for Nutrient Acquisition by Agriculturally Important Grasses: A Comprehensive Review of the Science and the Application
2018
[189] Evaluating the Effect of Bacterial Inoculation and Fertilization on the Soil Nutrient Status of Coal Mine Soil by Growing Soybean (Glycine max) and Shrub Lespedeza …
2018
[190] Morphological and Bio-chemical Characterization of Winged Bean Rhizobium and its Impact as Seed Inoculant either Singly or Combinedly with PGPR towards Yield …
2018
[191] Effect of Rhizobium inoculation to nodulation and growth of soybean [Glycine max (L.) Merrill] germplasm.
2018
[192] Influência da reinoculação e coinoculação na produtividade de soja na região Centro-Sul do Paraná
2018
[193] Co-inoculação de Bradyrhizobium japonicum e Azospirillum brasiliensis em diferentes cultivares de soja
2018
[194] Identification of Plant Compounds Involved in the Microbe-Plant Communication During the Coinoculation of Soybean with Bradyrhizobium elkanii and Delftia sp …
2018
[195] Inoculation effect of rhizobial strains on growth, yield and chemical composition of some legume crops in new reclaimed soil
2018
[196] Quorum sensing communication: Bradyrhizobium‐Azospirillum interaction via N‐acyl‐homoserine lactones in the promotion of soybean symbiosis
Polymer composites, 2018
[197] Co-inoculation with Bradyrhizobium and Azospirillum Increases Yield and Quality of Soybean Seeds
Agronomy Journal, 2018
[198] Protein content in Glycine max grains influenced by the mixed inoculation of Bradyrhizobium japonicum and Azospirillum brasilense
2018
[199] Promoting fruit seedling growth by encapsulated microorganisms
2018
[200] Plant Growth Promoting Rhizobacteria (PGPR): Current & Future Prospective for Sustainable Agriculture
2018
[201] Soja associada à inoculação e coinoculação de Bradyrhizobium e Azospirillum após cultivos de outono-inverno
2018
[202] Ciclo do nitrogênio em sistemas agrícolas.
2018
[203] Co-inoculation of maize with Azospirillum brasilense and Rhizobium tropici as a strategy to mitigate salinity stress
2018
[204] Revealing strategies of quorum sensing in Azospirillum brasilense strains Ab-V5 and Ab-V6
Archives of Microbiology, 2018
[205] Azospirillum: benefits that go far beyond biological nitrogen fixation
AMB Express, 2018
[206] Effects of co-inoculation of Bradyrhizobium elkanii BLY3-8 and Streptomyces griseoflavus P4 on Rj4 soybean varieties
Soil Science and Plant Nutrition, 2018
[207] Effects of co-inoculation of Bradyrhizobium japonicum SAY3-7 and Streptomyces griseoflavus P4 on plant growth, nodulation, nitrogen fixation, nutrient uptake, and …
Soil Science and Plant Nutrition, 2018
[208] Draft Genome Sequences of Azospirillum brasilense Strains Ab-V5 and Ab-V6, Commercially Used in Inoculants for Grasses and Legumes in Brazil
2018
[209] Overview of Non Tuberculosis Mycobacterial Lung Diseases
2018
[210] Promoção do crescimento de mudas frutíferas por meio de microrganismos encapsulados
2018
[211] Protein content in Glycine max grains influenced by the mixed inoculation of Bradyrhizobium japonicum and Azospirillum brasilense.
2018
[212] Determinants derived from PGPR cap able of increasing soybean and mung bean production via bradyrhizobium inoculation
2018
[213] Co‐inoculation with Bradyrhizobium and Azospirillum Increases Yield and Quality of Soybean Seeds
2018
[214] Generalized mixed linear modeling approach to analyze nodulation in common bean inbred lines
2017
[215] Isolation, characterization and evaluation of plant growth promoting rhizobacteria from soybean
2017
[216] Income Diversification through a Crop-Livestock-Forest Integration System in the Midwest Brazilian Region
2017
[217] Rhizobial bioformulations: Past, Present and Future
Rhizotrophs: Plant Growth Promotion to Bioremediation, 2017
[218] Plant microbiomes and its beneficial multifunctional plant growth promoting attributes
2017
[219] Plant growth promoting bacteria: biodiversity and multifunctional attributes for sustainable agriculture
2017
[220] The benefits of foliar inoculation with Azospirillum brasilense in soybean are explained by an auxin signaling model
Symbiosis, 2017
[221] Production of polyhydroxybutyrate (PHB) and biofilm by Azospirillum brasilense aiming at the development of liquid inoculants with high performance
African Journal of Biotechnology, 2017
[222] Effect of Rhizobium inoculation to nodulation and growth of soybean [Glycine max (L.) Merrill] germplasm
2017
[223] Inoculation Effects of Associative Plant Growth-Promoting Rhizobacteria on the Performance of Legumes
Microbes for Legume Improvement, 2017
[224] Effects of associated co-inoculation of Bradyrhizobium japonicum with Azospirillum brasilense on soybean yield and growth
African Journal of Agricultural Research, 2017
[225] Diversity and Importance of Diazotrophic Bacteria to Agricultural Sustainability in the Tropics
Diversity and Benefits of Microorganisms from the Tropics, 2017
[226] 埃及三葉草在兩種土壤共同接種根瘤菌及根圈有益菌對植株產量, 固氮能力及養分吸收的影響
臺灣中興大學學位論文, 2017
[227] Genetic diversity of Rhizobia and Rhizobacteria from Soybean [Glycine max (L) Merr.]: Implication for the Commercial Production and Application to …
2017
[228] Ciclo do Nitrogênio
2017
[229] Alfalfa yield and nutrient uptake as influenced by co-inoculation with rhizobium and rhizobacteria
2017
[230] Production of polyhydroxybutyrate (PHB) and biofilm by Azospirillum brasilense aiming at the development of liquid inoculants with high performance.
2017
[231] Income diversification through a crop-livestock-forest integration system in the Midwest Brazilian Region.
2017
[232] Abordagem de modelos lineares generalizados mistos para analisar nodulação em linhagens de feijoeiro-comum
2017
[233] Potential of indole acetic acid producing rhizobacteria to promote the growth and increase the yield of edamame, a vegetable soybean (Glycine max).
2017
[234] Genetic diversity of rhizobia and rhizobacteria from soybean [Glycine max (L) Merr.]: Implication for the commercial production and application to enhance soybean …
2017
[235] Potential of indole acetic acid producing rhizobacteria to promote the growth and increase the yield of edamame, a vegetable soybean (Glycine max)
International Journal of …, 2017
[236] Influence of cyanobacterial auxin on sprouting of taro (Colocasia esculenta var. antiquorum) and corm yield
Indian J. Agric. Sci, 2017
[237] Abordagem de modelos lineares generalizados mistos para analisar nodulação em linhagens de feijoeiro-comum.
Soto… - Pesquisa …, 2017
[238] Co-inoculação com bactérias diazotróficas em soja associada a aplicação de ureia em cobertura
Ciência e …, 2016
[239] Co-inoculação de Rhizobium tropici e Azospirillum brasilense em feijoeiro cultivado sob duas lâminas de irrigação
Revista Ceres, 2016
[240] Pulverização dirigida no sulco e inoculação na semente de milho com Azospirillum brasilense
2016
[241] Morphoagronomic and productive traits of RR® soybean due to inoculation via Azospirillum brasilense groove
African Journal of …, 2016
[242] Research Article Inoculated Soybean Response to Starter Nitrogen in Conventional Cropping System in Moghan
2016
[243] Bacteria consortium optimization improves nutrient uptake, nodulation, disease suppression and growth of the common bean (Phaseolus vulgaris) in both pot and field …
Rhizosphere, 2016
[244] Co-inoculation of Rhizobium tropici and Azospirillum brasilense in common beans grown under two irrigation depths1
2016
[245] Manochehr Shiri Janagard and Asghar Ebadi-Segherloo
Journal of Agronomy, 2016
[246] Inoculated Soybean Response to Starter Nitrogen in Conventional Cropping System in Moghan
Journal of Agronomy, 2016
[247] Accessing inoculation methods of maize and wheat with Azospirillum brasilense
AMB Express, 2016
[248] Morphoagronomic and productive traits of RR soybean due to inoculation via Azospirillum brasilense groove
African Journal of Microbiology Research, 2016
[249] Co-inoculation of Rhizobium tropici and Azospirillum brasilense in common beans grown under two irrigation depths
Revista Ceres, 2016
[250] Synergistic effects of seed inoculation with Azospirillum brasilense and nitrogen sources on double cropped maize production in tropical savanna of Brazil
Australian Journal of Crop Science, 2016
[251] Low-Density Co-Inoculation with Bradyrhizobium japonicum SAY3-7 and Streptomyces griseoflavus P4 Promotes Plant Growth and Nitrogen Fixation in …
2016
[252] Strategies to promote early nodulation in soybean under drought
Field Crops Research, 2016
[253] Co-inoculation with diazotrophic bacteria in soybeans associated to urea topdressing
2016
[254] Synergistic effects of seed inoculation with'Azospirillum brasilense'and nitrogen sources on double cropped maize production in tropical savanna of Brazil
2016
[255] Bacteria consortium optimization improves nutrient uptake, nodulation, disease suppression and growth of the common bean (Phaseolus vulgaris) in both pot and field studies
Rhizosphere, 2016
[256] Soybeans, Stress, and Plant Growth-Promoting Rhizobacteria
Environmental Stresses in Soybean Production, 2016
[257] Low-density co-inoculation with Bradyrhizobium japonicum SAY3-7 and Streptomyces griseoflavus P4 promotes plant growth and nitrogen fixation in soybean …
2016
[258] Plant growth-promoting bacteria from Western Australian soils
2016
[259] Inoculated soybean response to starter nitrogen in conventional cropping system in Moghan.
2016
[260] Co-inoculation of soybean with Bradyrhizobium and Azospirillum promotes early nodulation
American Journal of Plant Sciences, 2015
[261] Response of some soybean cultivars bacterial inoculation combined with N fertilization
2015
[262] Maize growth promotion by inoculation with Azospirillum brasilense and metabolites of Rhizobium tropici enriched on lipo-chitooligosaccharides (LCOs)
AMB Express, 2015
[263] Co-inoculation of soybean with Bradyrhizobium and Azospirillum promotes early nodulation
American Journal of Plant Sciences, 2015
[264] Enhanced plant growth and/or nitrogen fixation by leguminous and non-leguminous crops after single or dual inoculation of Streptomyces griseoflavus P4 with Bradyhizobium strains
African Journal of Microbiology Research, 2015
[265] Co-Inoculation of Soybean with Bradyrhizbium and Azospirillum Promotes Early Nodulation
American Journal of Plant Sciences, 2015
[266] Enhanced plant growth and/or nitrogen fixation by leguminous and non-leguminous crops after single or dual inoculation of Streptomyces griseoflavus P4 with …
2015
[267] Homeostatic theory of obesity
2015
[268] Isolation and screening of indigenous rhizobia from black gram cultivated in fallow rice soils for plant growth promoting traits
Malaysian J Soil …, 2010
[269] PEDRO AUGUSTO ANDRADE SECCO
[270] Orientador: Dr. Paulo Ivan Fernandes Júnior
[271] UNIVERSIDADE FEDERAL DA PARAÍBA-UFPB CENTRO DE CIÊNCIAS AGRÁRIAS–CCA CAMPUS II-AREIA–PB PROGRAMA DE PÓS-GRADUAÇÃO EM …
PPGCS
[272] Department of Crop Production, Faculty of Biology and Agriculture, University of Rzeszów, Zelwerowicza 4, 35-601 Rzeszów, Poland* Corresponding …
[273] ГЛИКОПОЛИМЕРЫ ВНЕШНЕЙ МЕМБРАНЫ И ВНЕКЛЕТОЧНЫЕ ПОЛИСАХАРИДЫ АССОЦИАТИВНЫХ БАКТЕРИЙ РОДА AZOSPIRILLUM В …
[274] Trichoderma harzianum enhances root biomass production and promotes lateral root growth of soybean and common bean under drought stress
[275] EFFECT OF RHIZOBIAL INOCULATION ON THE GROWTH OF BAMBARA NUT (VoandzeiasubterraneaL) and SOYBEAN (Glycine max L) ON SOIL OF ' …
[276] Altura de plantas de milho em diferentes métodos de inoculação de sementes com Azospirillum brasilense
SCIRP Newsletter
Copyright © 2006-2026 Scientific Research Publishing Inc. All Rights Reserved.
Top