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与野生型植物相比,基因过表达提高了棉花产量以及对干旱和盐胁迫的耐受性。

gene overexpression improves cotton yield and tolerance to drought and salt stress comparison with wild-type plants.

作者信息

Xia Wenwen, Zong Jiahang, Zheng Kai, Wang Yuan, Zhang Dongling, Guo Sandui, Sun Guoqing

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, China.

Hainan Yazhou Bay Seed Lab, Sanya, China.

出版信息

Front Plant Sci. 2022 Sep 6;13:985900. doi: 10.3389/fpls.2022.985900. eCollection 2022.

Abstract

Drought and high salinity are key limiting factors for cotton quality and yield. Therefore, research is increasingly focused on mining effective genes to improve the stress resistance of cotton. Few studies have demonstrated that bacterial () overexpression can enhance plants stress tolerance. Here, we first identified and cloned a gene encoding 88 amino acids (aa) with an open reading frame (ORF) of 264 base pairs (bp) from a with high resistance to strong radiation, drought, and high temperature. In this study, heterologous expression of promoted cotton growth, as exhibited by larger leaf size and higher plant height than the wild-type plants. Moreover, transgenic cotton lines showed higher tolerance to drought and salts stresses than wild-type plants, as revealed by susceptibility phenotype and physiological indexes. Furthermore, the enhanced stresses tolerance was attributed to high capacity of cellular osmotic regulation and ROS scavenging resulted from expression modulating relative genes upregulated to cause proline and betaine accumulation. Meanwhile, photosynthetic efficiency and yield were significantly higher in the transgenic cotton than in the wild-type control under field conditions. This study provides a newly effective gene resource to cultivate new cotton varieties with high stresses resistance and yield.

摘要

干旱和高盐度是影响棉花品质和产量的关键限制因素。因此,研究越来越集中于挖掘有效基因以提高棉花的抗逆性。很少有研究表明细菌()的过表达能够增强植物的胁迫耐受性。在此,我们首先从一株对强辐射、干旱和高温具有高抗性的()中鉴定并克隆了一个基因,该基因编码88个氨基酸,开放阅读框(ORF)为264个碱基对(bp)。在本研究中,()的异源表达促进了棉花生长,表现为叶片尺寸比野生型植株更大,株高更高。此外,通过敏感性表型和生理指标表明,转基因棉花品系比野生型植株对干旱和盐胁迫具有更高的耐受性。此外,胁迫耐受性的增强归因于细胞渗透调节和活性氧清除能力的提高,这是由于()表达上调调控相关基因导致脯氨酸和甜菜碱积累所致。同时,在田间条件下,转基因棉花的光合效率和产量显著高于野生型对照。本研究为培育具有高抗逆性和高产的棉花新品种提供了一种新的有效基因资源。

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