Genomic Analysis of Soybean PP2A-B" Family and Its Effects on Drought and Salt Tolerance

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Abstract

Abiotic stresses induce the accumulation of reactive oxygen species (ROS) and significantly affect plant growth. Protein phosphatase 2A (PP2A) plays an important role in controlling intracellular and extracellular ROS signals. However, the interaction between PP2A, ROS, and stress tolerance remains largely unclear. In this study, we found that the B (Formula presented.) subunit of PP2A (PP2A-B (Formula presented.)) can be significantly induced and was analyzed using drought- and salt-induced soybean transcriptome data. Eighty-three soybean PP2A-B (Formula presented.) genes were identified from the soybean genome via homologous sequence alignment, which was distributed across 20 soybean chromosomes. Among soybean PP2A-B (Formula presented.) family genes, 26 GmPP2A-B (Formula presented.) members were found to be responsive to drought and salt stresses in soybean transcriptome data. Quantitative PCR (qPCR) analysis demonstrated that GmPP2A-B (Formula presented.) 71 had the highest expression levels under salt and drought stresses. Functional analysis demonstrated that overexpression of GmPP2A-B (Formula presented.) 71 in soybeans can improve plant tolerance to drought and salt stresses; however, the interference of GmPP2A-B (Formula presented.) 71 in soybean increased the sensibility to drought and salt stresses. Further analysis demonstrated that overexpression of GmPP2A-B (Formula presented.) 71 in soybean could enhance the expression levels of stress-responsive genes, particularly genes associated with ROS elimination. These results indicate that PP2A-B (Formula presented.) can promote plant stress tolerance by regulating the ROS signaling, which will contribute to improving the drought resistance of crops.

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Xiong, Y., Fan, X. H., Wang, Q., Yin, Z. G., Sheng, X. W., Chen, J., … Xu, Z. S. (2022). Genomic Analysis of Soybean PP2A-B" Family and Its Effects on Drought and Salt Tolerance. Frontiers in Plant Science, 12. https://doi.org/10.3389/fpls.2021.784038

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