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BpGRP1 acts downstream of BpmiR396c/BpGRF3 to confer salt tolerance in Betula platyphylla.

Authors :
Liu, Zhongyuan
Zhang, Tengqian
Xu, Ruiting
Liu, Baichao
Han, Yating
Dong, Wenfang
Xie, Qingjun
Tang, Zihao
Lei, Xiaojin
Wang, Chao
Fu, Yujie
Gao, Caiqiu
Source :
Plant Biotechnology Journal. Jan2024, Vol. 22 Issue 1, p131-147. 17p.
Publication Year :
2024

Abstract

Summary: Glycine‐rich RNA‐binding proteins (GRPs) have been implicated in the responses of plants to environmental stresses, but the function of GRP genes involved in salt stress and the underlying mechanism remain unclear. In this study, we identified BpGRP1 (glycine‐rich RNA‐binding protein), a Betula platyphylla gene that is induced under salt stress. The physiological and molecular responses to salt tolerance were investigated in both BpGRP1‐overexpressing and suppressed conditions. BpGRF3 (growth‐regulating factor 3) was identified as a regulatory factor upstream of BpGRP1. We demonstrated that overexpression of BpGRF3 significantly increased the salt tolerance of birch, whereas the grf3‐1 mutant exhibited the opposite effect. Further analysis revealed that BpGRF3 and its interaction partner, BpSHMT, function upstream of BpGRP1. We demonstrated that BpmiR396c, as an upstream regulator of BpGRF3, could negatively regulate salt tolerance in birch. Furthermore, we uncovered evidence showing that the BpmiR396c/BpGRF3 regulatory module functions in mediating the salt response by regulating the associated physiological pathways. Our results indicate that BpmiR396c regulates the expression of BpGRF3, which plays a role in salt tolerance by targeting BpGRP1. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14677644
Volume :
22
Issue :
1
Database :
Academic Search Index
Journal :
Plant Biotechnology Journal
Publication Type :
Academic Journal
Accession number :
174515150
Full Text :
https://doi.org/10.1111/pbi.14173