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水稻碳水化合物结合类Malectin蛋白OsCBM1通过参与NADPH氧化酶介导的活性氧生成来促进干旱胁迫耐受性。

Rice Carbohydrate-Binding Malectin-Like Protein, OsCBM1, Contributes to Drought-Stress Tolerance by Participating in NADPH Oxidase-Mediated ROS Production.

作者信息

Jing Xiu-Qing, Li Wen-Qiang, Zhou Meng-Ru, Shi Peng-Tao, Zhang Ran, Shalmani Abdullah, Muhammad Izhar, Wang Gang-Feng, Liu Wen-Ting, Chen Kun-Ming

机构信息

State Key Laboratory of Crop Stress Biology in Arid Area, College of Life Sciences, Northwest A&F University, Yangling, 712100, Shaanxi, China.

Department of Biology, Taiyuan Normal University, Taiyuan, 030619, Shanxi, China.

出版信息

Rice (N Y). 2021 Dec 7;14(1):100. doi: 10.1186/s12284-021-00541-5.

Abstract

Carbohydrate-binding malectin/malectin-like domain-containing proteins (CBMs) are a recently identified protein subfamily of lectins that participates various functional bioprocesses in the animal, bacterial, and plant kingdoms. However, little is known the roles of CBMs in rice development and stress response. In this study, OsCBM1, which encodes a protein containing only one malectin-like domain, was cloned and characterized. OsCBM1 is localized in both the endoplasmic reticulum and plasma membrane. Its transcripts are dominantly expressed in leaves and could be significantly stimulated by a number of phytohormone applications and abiotic stress treatments. Overexpression of OsCBM1 increased drought tolerance and reactive oxygen species production in rice, whereas the knockdown of the gene decreased them. OsCBM1 physically interacts with OsRbohA, a NADPH oxidase, and the expression of OsCBM1 in osrbohA, an OsRbohA-knockout mutant, is significantly downregulated under both normal growth and drought stress conditions. Meanwhile, OsCBM1 can also physically interacts with OsRacGEF1, a specific guanine nucleotide exchange factor for the Rop/Rac GTPase OsRac1, and transient coexpression of OsCBM1 with OaRacGEF1 significantly enhanced ROS production. Further transcriptome analysis showed that multiple signaling regulatory mechanisms are involved in the OsCBM1-mediated processes. All these results suggest that OsCBM1 participates in NADPH oxidase-mediated ROS production by interacting with OsRbohA and OsRacGEF1, contributing to drought stress tolerance of rice. Multiple signaling pathways are likely involved in the OsCBM1-mediated stress tolerance in rice.

摘要

结合碳水化合物的含有malectin/malectin样结构域的蛋白质(CBMs)是最近鉴定出的凝集素蛋白亚家族,参与动物、细菌和植物界的各种功能生物过程。然而,关于CBMs在水稻发育和胁迫响应中的作用知之甚少。在本研究中,克隆并鉴定了编码仅含有一个malectin样结构域蛋白质的OsCBM1。OsCBM1定位于内质网和质膜。其转录本在叶片中优势表达,并可被多种植物激素处理和非生物胁迫处理显著诱导。过表达OsCBM1提高了水稻的耐旱性和活性氧产生,而该基因的敲低则降低了这些特性。OsCBM1与NADPH氧化酶OsRbohA发生物理相互作用,并且在正常生长和干旱胁迫条件下,OsCBM1在OsRbohA基因敲除突变体osrbohA中的表达均显著下调。同时,OsCBM1还能与Rop/Rac GTPase OsRac1的特异性鸟嘌呤核苷酸交换因子OsRacGEF1发生物理相互作用,并且OsCBM1与OaRacGEF1的瞬时共表达显著增强了活性氧的产生。进一步的转录组分析表明,多种信号调节机制参与了OsCBM1介导的过程。所有这些结果表明,OsCBM1通过与OsRbohA和OsRacGEF1相互作用参与NADPH氧化酶介导的活性氧产生,有助于水稻的干旱胁迫耐受性。多种信号通路可能参与了OsCBM1介导的水稻胁迫耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d55/8651890/cfef547095af/12284_2021_541_Fig1_HTML.jpg

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