2022
DOI: 10.1101/2022.07.18.500515
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Culturomics of Andropogon gerardii rhizobiome revealed nitrogen transforming capabilities of stress-tolerant Pseudomonas under drought conditions

Abstract: Background: Climate change will result in more frequent droughts that impact soil inhabiting microbiomes in the agriculturally vital North American perennial grasslands. In this study, we used the combination of culturomics and high-resolution genomic sequencing of microbial consortia isolated from the rhizosphere of a tallgrass prairie foundation grass, Andropogon gerardii. We cultivated the plant host associated microbes under artificial drought induced conditions and identified the microbe(s) that might pla… Show more

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“…Some PGPB can fix nitrogen from the atmosphere and transform it into a form that plants can use, encouraging plant growth [ 198 , 199 ]. In a study by Sarkar [ 200 ], culturomics was utilized to assess the capability of drought-tolerant Pseudomonas for nitrogen fixation. In addition, an essential form of PGPB such as siderophilic bacteria can release siderophores to chelate Fe 3+ in the soil for plant development [ 201 ].…”
Section: Methods Of Microbiome Studiesmentioning
confidence: 99%
“…Some PGPB can fix nitrogen from the atmosphere and transform it into a form that plants can use, encouraging plant growth [ 198 , 199 ]. In a study by Sarkar [ 200 ], culturomics was utilized to assess the capability of drought-tolerant Pseudomonas for nitrogen fixation. In addition, an essential form of PGPB such as siderophilic bacteria can release siderophores to chelate Fe 3+ in the soil for plant development [ 201 ].…”
Section: Methods Of Microbiome Studiesmentioning
confidence: 99%