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S-腺苷甲硫氨酸及其衍生物在棉花耐盐性中的作用。

Roles of S-Adenosylmethionine and Its Derivatives in Salt Tolerance of Cotton.

机构信息

College of Life Science, Yangtze University, Jingzhou 434025, China.

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang 455000, China.

出版信息

Int J Mol Sci. 2023 May 30;24(11):9517. doi: 10.3390/ijms24119517.

Abstract

Salinity is a major abiotic stress that restricts cotton growth and affects fiber yield and quality. Although studies on salt tolerance have achieved great progress in cotton since the completion of cotton genome sequencing, knowledge about how cotton copes with salt stress is still scant. S-adenosylmethionine (SAM) plays important roles in many organelles with the help of the SAM transporter, and it is also a synthetic precursor for substances such as ethylene (ET), polyamines (PAs), betaine, and lignin, which often accumulate in plants in response to stresses. This review focused on the biosynthesis and signal transduction pathways of ET and PAs. The current progress of ET and PAs in regulating plant growth and development under salt stress has been summarized. Moreover, we verified the function of a cotton SAM transporter and suggested that it can regulate salt stress response in cotton. At last, an improved regulatory pathway of ET and PAs under salt stress in cotton is proposed for the breeding of salt-tolerant varieties.

摘要

盐度是一种主要的非生物胁迫,限制了棉花的生长,影响纤维的产量和质量。虽然自棉花基因组测序完成以来,有关棉花耐盐性的研究已经取得了很大进展,但棉花如何应对盐胁迫的知识仍然很少。S-腺苷甲硫氨酸(SAM)在 SAM 转运蛋白的帮助下,在许多细胞器中发挥重要作用,它也是乙烯(ET)、多胺(PAs)、甜菜碱和木质素等物质的合成前体,这些物质通常在植物应对胁迫时积累。本综述重点介绍了 ET 和 PAs 的生物合成和信号转导途径。总结了 ET 和 PAs 在盐胁迫下调节植物生长和发育的最新进展。此外,我们验证了棉花 SAM 转运蛋白的功能,并提出它可以调节棉花对盐胁迫的反应。最后,提出了一个改进的棉花 ET 和 PAs 在盐胁迫下的调控途径,用于培育耐盐品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/449b/10253415/5bb1ad749dce/ijms-24-09517-g001.jpg

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