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盐胁迫下过表达冬小麦扩展蛋白基因对水稻功能的鉴定研究。

A Study on the Functional Identification of Overexpressing Winter Wheat Expansin Gene in Rice under Salt Stress.

机构信息

College of Life Sciences, Northeast Agricultural University, Harbin 150030, China.

出版信息

Int J Mol Sci. 2024 Jul 14;25(14):7707. doi: 10.3390/ijms25147707.

Abstract

Expansin is a cell wall relaxant protein that is common in plants and directly or indirectly participates in the whole process of plant root growth, development and morphogenesis. A well-developed root system helps plants to better absorb water and nutrients from the soil while effectively assisting them in resisting osmotic stress, such as salt stress. In this study, we observed and quantified the morphology of the roots of overexpressing the gene obtained by the research group in the early stage of development. We combined the bioinformatics analysis results relating to EXPA genes in five plants and identified , a member of the EXPA family closely related to root development in winter wheat. Subcellular localization analysis of the TaEXPA7-B protein showed that it is located in the plant cell wall. In this study, the gene was overexpressed in rice. The results showed that plant height, root length and the number of lateral roots of rice overexpressing the gene were significantly higher than those of the wild type, and the expression of the gene significantly promoted the growth of lateral root primordium and cortical cells. The plants were treated with 250 mM NaCl solution to simulate salt stress. The results showed that the accumulation of osmotic regulators, cell wall-related substances and the antioxidant enzyme activities of the overexpressed plants were higher than those of the wild type, and they had better salt tolerance. This paper discusses the effects of winter wheat expansins in plant root development and salt stress tolerance and provides a theoretical basis and relevant reference for screening high-quality expansin regulating root development and salt stress resistance in winter wheat and its application in crop molecular breeding.

摘要

扩展蛋白是一种细胞壁松弛蛋白,普遍存在于植物中,直接或间接地参与植物根生长、发育和形态发生的全过程。一个发达的根系有助于植物更好地从土壤中吸收水分和养分,同时有效地帮助它们抵抗渗透胁迫,如盐胁迫。在这项研究中,我们观察和量化了研究小组在早期发育阶段获得的过表达基因的根形态。我们结合了与五种植物中 EXPA 基因相关的生物信息学分析结果,鉴定出一个与冬小麦根发育密切相关的 EXPA 家族成员。TaEXPA7-B 蛋白的亚细胞定位分析表明,它位于植物细胞壁中。在这项研究中,过表达了水稻中的基因。结果表明,过表达基因的水稻植株高度、根长和侧根数明显高于野生型,基因的表达显著促进了侧根原基和皮层细胞的生长。用 250mM NaCl 溶液处理植物以模拟盐胁迫。结果表明,过表达植株的渗透调节剂、细胞壁相关物质的积累和抗氧化酶活性均高于野生型,具有更好的耐盐性。本文讨论了冬小麦扩展蛋白在植物根发育和耐盐性中的作用,为筛选调控冬小麦根系发育和耐盐性的优质扩展蛋白提供了理论依据和相关参考,并为其在作物分子育种中的应用提供了理论依据和相关参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2257/11277075/f9b3376d339a/ijms-25-07707-g001.jpg

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