Role of plant growth-promoting bacteria (PGPB) in enhancing phenolic compounds biosynthesis and its relevance to abiotic stress tolerance in plants: a review. [PDF]
Jakubowska Z +2 more
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Agronomic Efficiency of a New Liquid Inoculant Formulated with a Mixture of <i>Azospirillum brasilense</i> Strains Ab-V5 and Ab-V6 in Corn (<i>Zea mays</i> L.). [PDF]
Fendrich RC, Silva MB, Marriel IE.
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<i>Azospirillum brasilense</i> as a Bioinoculant to Alleviate the Effects of Salinity on Quinoa Seed Germination. [PDF]
Apaza-Calcina JD +4 more
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Supplementation with Mo, Co, and Ni Enhances the Effectiveness of Co-Inoculation with the Rhizobacteria <i>Azospirillum brasilense</i> and <i>Bradyrhizobium diazoefficiens</i> in Soybean. [PDF]
Reis MNO +6 more
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Agronomic Efficiency of <i>Bacillus</i> spp. Co-Inoculation Associated with Phosphorus Fertilization Levels in Soybean and Maize Cultivation. [PDF]
Zamarian AS +4 more
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Soil Microbiome for Climate Smart Agriculture in Legumes: A Review. [PDF]
Tamang KR +7 more
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PGPR-mediated enhancement of soil nutrients, rhizosphere microbial ecology, and plant growth: a review. [PDF]
Wang M, Xu Z.
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Role of rhizosphere specific microbiome in enhancing soybean productivity across contrasting soil and crop management systems. [PDF]
Ranjan P +9 more
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Genome-based reclassification of Azospirillum brasilense Sp245 as the type strain of Azospirillum baldaniorum sp. nov [PDF]
Azospirillum sp. strain Sp245T, originally identified as belonging to Azospirillum brasilense, is recognized as a plant-growth-promoting rhizobacterium due to its ability to fix atmospheric nitrogen and to produce plant-beneficial compounds. Azospirillum
Stefan Schwab +2 more
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