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Bradyrhizobium sp. CCBAU 53351
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Sinorhizobium meliloti 761A Resequencing. Sinorhizobium meliloti strain:761A
Resequencing of Sinorhizobium species to Identify the genetic basis of microbial success in legume-rhizobia mutualism
NIAID Data Ecosystem40
Table_3_Identification of the Important Genes of Bradyrhizobium diazoefficiens 113-2 Involved in Soybean Nodule Development and Senescence.XLSX
Legume nodule development and senescence directly affect nitrogen fixation efficiency and involve a programmed series of molecular events. These molecular events are carried out synchronously by legum
NIAID Data Ecosystem20
Growth Conditions Determine the DNF2 Requirement for Symbiosis
Rhizobia and legumes are able to interact in a symbiotic way leading to the development of root nodules. Within nodules, rhizobia fix nitrogen for the benefit of the plant. These interactions are effi
NIAID Data Ecosystem10
Metabolomics and transcriptomics identify multiple downstream targets of Paraburkholderia phymatum σ54 during symbiosis with Phaseolus vulgaris
RpoN (σ54) is the key sigma factor for the regulation of transcription of nitrogen fixation genes in diazotrophic bacteria, which include alpha- and beta-rhizobia. Our previous studies showed that a r
NIAID Data Ecosystem30
Genome-wide maps of chromatin state in Medicago truncatula nodule and non nitrogen-starved root systems
Study of repressive marks (two heterochromatic: H3K9me2 and H3K27me1; one euchromatic: H3K27me3) and one active mark (H3K9ac) by whole-genome ChIPseq SRA_STUDY_ACCESSION=SRP131849 BIOPROJECT=PRJNA4317
NIAID Data Ecosystem20



