Unraveling the drought-responsive transcriptomes in nodules of two common bean genotypes during biological nitrogen fixation
Helder Anderson Pinto da Silva, Vanessa Santana Caetano, Daniella Duarte Villarinho Pessôa, Rafael Sanches Pacheco, Carlos Henrique S. G. Meneses, Jean Luiz Simões-Araújo

TL;DR
This study explores how two common bean varieties respond to drought at the genetic level in their root nodules, which are important for nitrogen fixation.
Contribution
The study reveals shared and genotype-specific drought-responsive genes in root nodules, offering new insights into plant adaptation under stress.
Findings
Both genotypes shared drought-responsive genes like heat shock proteins and peroxidase.
BAT 477 showed more differentially expressed genes and stronger transcriptional disturbances under drought.
RT-qPCR confirmed the expression profiles of ten key drought-related genes in nodules.
Abstract
Common bean (Phaseolus vulgaris) can efficiently fix atmospheric nitrogen when associated with Rhizobia. However, drought stress impairs plant metabolic processes, especially the biological nitrogen fixation (BNF). Here, we assessed transcriptional responses in nodules of two common bean genotypes to drought stress under BNF reliance. The RNA-Seq analysis yielded a total of 81,489,262 and 72,497,478 high quality reads for Negro Argel and BAT 477 genotypes, respectively. The reads were mapped to the Phaseolus vulgaris reference genome and expression analysis identified 145 and 1451 differentially expressed genes (DEGs) for Negro Argel and BAT 477 genotypes, respectively. Although BAT 477 had more DEGs, both genotypes shared certain drought-responsive genes, including an up-regulated heat shock protein (HSP) and a down-regulated peroxidase, indicating shared pathways activated during…
Genes, proteins, chemicals, diseases, species, mutations and cell lines named across the full text — each resolved to its canonical identifier and authoritative record.
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Taxonomy
TopicsAdvanced Algebra and Logic
