Results 141 to 150 of about 8,671 (185)
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Bacillus as PGPR in Crop Ecosystem

2011
Gram-positive bacteria, in particular, members of group Bacillus, are among the best-studied experimental systems in bacteriology. Research, in Bacillus subtilis is remarkably diverse, including genetics, biochemistry, cell biology, and ecology, thus has an enormous impact on both basic and applied biology.
Ankit Kumar, Anil Prakash, B. N. Johri
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Potential Role of PGPR in Agriculture

2014
Plant growth-promoting rhizobacteria (PGPR) are the rhizosphere bacteria that can enhance plant growth by a wide variety of mechanisms such as phosphate solubilization, siderophore production, biological nitrogen fixation, rhizosphere engineering, production of 1-aminocyclopropane-1-carboxylate (ACC) deaminase, quorum-sensing (QS) signal interference ...
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Perspectives of PGPR in Agri-Ecosystems

2011
Bacteria inhabiting the rhizosphere and beneficial to plants are termed as plant growth-promoting rhizobacteria (PGPR). A putative rhizobacteria qualifies as PGPR when it is able to produce a positive effect on the plant upon inoculation, hence demonstrating good competitive skills over existing rhizosphere communities.
Meenu Saraf   +2 more
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Abiotic Stress Tolerance Induced by Endophytic PGPR

2013
Abiotic stresses, like shortage of water, soil salinity, and extreme temperatures, are a main threat over worldwide agriculture. Plant growth promoter rhizobacteria (PGPR) refers to several bacterial endophytes with alleged positive effects on plant health and growth.
Piccoli, Patricia Noemí   +1 more
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Potential of PGPR in Agricultural Innovations

2010
Plant growth promoting rhizobacteria (PGPR) are a group of free-living bacteria that colonize the rhizosphere and benefit the root growth in plants. Bacteria of diverse genera such as Azospirillium, Bacillus, Burkholderia, Klebsiella, Pseudomonas, etc., were identified as PGPR. These PGPR exert a direct effect on plant growth by inducing the production
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Polystyrene Microplastic Degradation by a Noval Pgpr Bacillus Spizizenii

Journal of Hazardous Materials
This study explores the novel use of Plant Growth Promoting Rhizobacteria, Bacillus spizizenii as a Polystyrene Microplastic (PS-MP) degrading agent. An impressive 85.86 % MP degradation efficiency was reported over a span of 30 days when Polystyrene (PS) was used as an exclusive carbon source.
Riya, Chandel   +3 more
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PGPR Bioelicitors

2019
Pooja Kannojia   +3 more
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Analytics and applications of polyglycerol polyricinoleate (PGPR)—Current research progress

Comprehensive Reviews in Food Science and Food Safety, 2023
Paul Van Der Meeren   +2 more
exaly  

Genetics Basis of PGPR Interactions

2023
Ambreen Ahmed, Aqsa Tariq
openaire   +1 more source

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