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Plasma membrane-associated calcium signaling modulates zinc homeostasis in Arabidopsis

质膜相关钙信号调控拟南芥锌稳态的分子机理
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摘要 Zinc(Zn)is a crucial micronutrient for all organisms,and its deficiency can significantly hamper crop yield and quality.However,the understanding of the regulatory mechanisms involved in plant Zn signal perception and transduction remains limited.In this study,we discovered that the Ca2+-CBL1/4/5/8/9-CIPK3/9/23/26-ZIP12 signaling module effectively responds to Zn deficiency and regulates Zn homeostasis in Arabidopsis thaliana.Furthermore,we determined that CIPK3/9/23/26 interact with the Zn transporter ZIP12 and phosphorylate it primarily at Ser185.This phosphorylation event was crucial for the stability of the ZIP12 protein,suggesting that it regulates the function of ZIP12 in Zn transport.Collectively,our findings identify a plasma membrane-associated calcium signaling pathway that regulates Zn homeostasis in Arabidopsis thaliana.This pathway represents a promising target for molecular breeding approaches aimed at developing crops with enhanced tolerance to Zn deficiency.
作者 Yanjun Fang Chuanfeng Ju Laiba Javed Chenyu Cao Yuan Deng Yaqi Gao Xuanyi Chen Lv Sun Yusheng Zhao Cun Wang 方燕军;琚传凤;Laiba Javed;曹琛钰;邓远;高雅琪;陈炫亦;孙绿;赵玉胜;王存
出处 《Science Bulletin》 2025年第9期1478-1490,共13页 科学通报(英文版)
基金 supported by the National Natural Science Foundation of China(32222008 and 32300235) China Postdoctoral Science Foundation(2023M732883) the Chinese Universities Scientific Fund(2452023069)。
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