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The translocation of a chloride channel from the Golgi to the plasma membrane helps plants adapt to salt stress

Nat Commun. 2024-05; 
Sivamathini Rajappa, Pannaga Krishnamurthy, Hua Huang, Dejie Yu, Jiří Friml, Jian Xu & Prakash P. Kumar
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Mutagenesis Services : In order to carry out liposome-based assays, synthetic gene expression construct was prepared by cloning the codon-optimized (for yeast, Pichia pastoris), full length AtCLCf gene into yeast expression vector pPICZA (GenScript Biotech, Singapore) that was used for recombinant protein production subsequently. T Get A Quote

摘要

A key mechanism employed by plants to adapt to salinity stress involves maintaining ion homeostasis via the actions of ion transporters. While the function of cation transporters in maintaining ion homeostasis in plants has been extensively studied, little is known about the roles of their anion counterparts in this process. Here, we describe a mechanism of salt adaptation in plants. We characterized the chloride channel (CLC) gene AtCLCf, whose expression is regulated by WRKY transcription factor under salt stress in Arabidopsis thaliana. Loss-of-function atclcf seedlings show increased sensitivity to salt, whereas AtCLCf overexpression confers enhanced resistance to salt stress. Salt stress induces the transl... More

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