The MsZFP1-MsWRKY40-MsWRKY41 module efficiently regulates LHCII biogenesis via ABA-dependent manner in alfalfa
Wuwu Wen, Li Gao, Liantai Su, Aimin Lv, Nana Fan, Xiangkai You, Yuehua Zhang, Peng Zhou, Zhaoming Wang, Fengling Shi, Yuan An
Journal:Science Advances
IF:13.9
DOI:10.1126/sciadv.aeb4778
PMID:
Published:2026-05-27
research field:植物生理学植物分子生物学光合作用研究转录调控遗传学与基因组学
Abstract
The light-harvesting complex (LHC) is the antenna system of photosystem that affects the photosynthetic efficiency of plants. In this study, MsWRKY41 was demonstrated to directly activate the expression of MsAlb3 and MsDVR1 , which involved in LHC protein insertion into thylakoid membrane and chlorophyll biosynthesis, respectively. Knockdown of MsWRKY41 in alfalfa led to yellow-green leaves and abnormal thylakoid structure. MsWRKY41 was the downstream target gene of MsWRKY40, which also directly and positively regulated the expression of four LHC protein genes MsLHCB1/4.3/5/7 . Overexpression of MsWRKY40 increased the accumulation of PSII-LHCII supercomplexes. MsWRKY40 physically interacted with zinc finger protein MsZFP1, which partly inhibited the expression of MsWRKY40-targeted genes. This interaction was weakened by physiologically high levels of ABA, leading to up-regulated expression of MsWRKY40-targeted genes. These results revealed a regulatory module centered on MsWRKY40-MsWRKY41, which integrates the biosynthetic processes of LHCB subunits and chlorophyll into a gene regulatory network, efficiently regulating LHCII biogenesis.
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