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Subfunctionalization of cation/proton antiporter 1 genes in grapevine in response to salt stress in different organs

机译:葡萄中阳离子/质子反转运蛋白1基因的亚功能响应不同器官中的盐胁迫

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摘要

Cation/proton antiporter 1 (CPA1) proteins function as regulators of monovalent ions, pH homeostasis, and other developmental processes in plants. Better understanding of the expression and regulation of CPA1 in plant responses to salinity would help the development of scientific practices in crops worldwide. In this report, we characterized all seven CPA1 family genes in grapevine (Vitis vinifera) in response to short-term osmotic and NaCl stresses. We found that two of the seven genes have subfunctionalized to be differentially expressed in response to NaCl stress in the early stage in different organs, whereas the other five members seem to play little or no role in this response. Specifically, VIT_19s0090g01480 may control Na+ compartmentalization in grapevine roots; and VIT_05s0020g01960 may influence Na+ transfer in stems. Based on the dynamics of ion concentrations, electrolyte leakage rates, and CPA1 gene expression in root, stem, and leaf tissues under osmotic and NaCl stresses, we suggest how grapevine responds physiologically and molecularly to the osmotic and ion toxicity of NaCl stress in the short term. This work lays a foundation for future research on the CPA1 gene family regarding its evolutionary history and biological functions for modulating salt responses in grapevine.
机译:阳离子/质子反转运蛋白1(CPA1)蛋白充当植物中单价离子,pH稳态和其他发育过程的调节剂。更好地了解植物对盐分反应中CPA1的表达和调控将有助于发展全世界农作物的科学实践。在此报告中,我们对葡萄(葡萄)的七个CPA1家族基因进行了表征,以应对短期的渗透和NaCl胁迫。我们发现,七个基因中的两个已经亚功能化,可以在早期在不同器官中响应NaCl胁迫而差异表达,而其他五个成员似乎在该响应中几乎没有作用。具体而言,VIT_19s0090g01480可以控制葡萄根中Na + 的区室化;和VIT_05s0020g01960可能影响茎中Na + 的转移。基于离子和NaCl胁迫下根,茎和叶组织中离子浓度,电解质泄漏速率和CPA1基因表达的动态变化,我们建议葡萄在短时间内对NaCl胁迫的渗透和离子毒性产生生理和分子反应术语。这项工作为CPA1基因家族的进化历史和调节葡萄中盐分反应的生物学功能奠定了基础,为将来的研究奠定了基础。

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