4.7 Article

Genome-Wide Identification and Characterization of the Soybean DEAD-Box Gene Family and Expression Response to Rhizobia

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MDPI
DOI: 10.3390/ijms23031120

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Glycine max; DEAD-box RNA helicases; phylogenetic analysis; nodulation; rhizobia

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In this study, we identified 80 DEAD-box genes in the soybean genome and found that most of these genes were highly conserved in Arabidopsis. However, two genes were specific to soybean. The promoters of these genes contained cis-acting elements involved in plant responses to various stresses, and half of the genes contained nodulation-related elements. Microarray analysis showed differential expression of the DEAD-box genes in roots and nodules, with 31 genes being induced or highly expressed in nodules.
DEAD-box proteins are a large family of RNA helicases that play important roles in almost all cellular RNA processes in model plants. However, little is known about this family of proteins in crops such as soybean. Here, we identified 80 DEAD-box family genes in the Glycine max (soybean) genome. These DEAD-box genes were distributed on 19 chromosomes, and some genes were clustered together. The majority of DEAD-box family proteins were highly conserved in Arabidopsis and soybean, but Glyma.08G231300 and Glyma.14G115100 were specific to soybean. The promoters of these DEAD-box genes share cis-acting elements involved in plant responses to MeJA, salicylic acid (SA), low temperature and biotic as well as abiotic stresses; interestingly, half of the genes contain nodulation-related cis elements in their promoters. Microarray data analysis revealed that the DEAD-box genes were differentially expressed in the root and nodule. Notably, 31 genes were induced by rhizobia and/or were highly expressed in the nodule. Real-time quantitative PCR analysis validated the expression patterns of some DEAD-box genes, and among them, Glyma.08G231300 and Glyma.14G115100 were induced by rhizobia in root hair. Thus, we provide a comprehensive view of the DEAD-box family genes in soybean and highlight the crucial role of these genes in symbiotic nodulation.

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