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单子叶植物非生物胁迫过程中耐寒差异 1(COLD1)基因的计算机特征分析和功能验证。

In silico characterisation and functional validation of chilling tolerant divergence 1 (COLD1) gene in monocots during abiotic stress.

机构信息

Plant Genetic Engineering Laboratory, Department of Biotechnology, Bharathiar University, Coimbatore, India.

Genetic Transformation Lab, Division of Crop Improvement, ICAR-Sugarcane Breeding Institute, Coimbatore, India.

出版信息

Funct Plant Biol. 2019 Jun;46(6):524-532. doi: 10.1071/FP18189.

Abstract

The G protein-coupled receptor is one of the major transmembrane proteins in plants. It consists of an α subunit, a β subunit and three γ subunits. Chilling tolerant divergence 1 (COLD1) includes a Golgi pH receptor (GPHR) domain, which maintains cell membrane organisation and dynamics, along with abscisic acid linked G protein-coupled receptor (ABA_GPCR) that regulates the signalling pathways during cold stress. In the present study, we performed characterisation of a homologous COLD1 from the economically important monocot species Oryza sativa L., Zea mays L., Sorghum bicolor (L.)Moench and Erianthus arundinaceus (L.) Beauv. IK 76-81, a wild relative of Saccharum. COLD1 was isolated from E. arundinaceus IK 76-81, analysed for its evolution, domain, membrane topology, followed by prediction of secondary, tertiary structures and functionally validated in all four different monocots. Gene expression studies of COLD1 revealed differential expression under heat, drought, salinity and cold stresses in selected monocots. This is the first study on regulation of native COLD1 during abiotic stress in monocots, which has opened up new leads for trait improvement strategies in this economically important crop species.

摘要

G 蛋白偶联受体是植物中主要的跨膜蛋白之一。它由一个α亚基、一个β亚基和三个γ亚基组成。耐冷分歧 1(COLD1)包括一个高尔基体 pH 受体(GPHR)结构域,该结构域维持细胞膜的组织和动态,以及与脱落酸相关的 G 蛋白偶联受体(ABA_GPCR),该受体在冷胁迫期间调节信号通路。在本研究中,我们对来自经济上重要的单子叶物种水稻、玉米、高粱和斑茅的同源 COLD1 进行了特征描述,斑茅是甘蔗的野生近缘种。从斑茅 IK 76-81 中分离出 COLD1,分析其进化、结构域、膜拓扑结构,然后预测二级、三级结构,并在所有四个不同的单子叶植物中进行功能验证。COLD1 的基因表达研究表明,在选定的单子叶植物中,热、干旱、盐和冷胁迫下的表达存在差异。这是首次在单子叶植物中研究非生物胁迫下天然 COLD1 的调控,为该经济重要作物物种的性状改良策略开辟了新的途径。

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