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水稻对热胁迫的蛋白质组学研究及水稻耐热性遗传工程的进展。

Proteomics of rice in response to heat stress and advances in genetic engineering for heat tolerance in rice.

机构信息

Crop Gene Engineering Key Laboratory of Hunan Province, Hunan Agricultural University, Furong District, Changsha, 410128, Hunan, China.

出版信息

Plant Cell Rep. 2011 Dec;30(12):2155-65. doi: 10.1007/s00299-011-1122-y. Epub 2011 Jul 17.

Abstract

Rice is the most important food crop worldwide. Global warming inevitably affects the grain yields of rice. Recent proteomics studies in rice have provided evidence for better understanding the mechanisms of thermal adaptation. Heat stress response in rice is complicated, involving up- or down-regulation of numerous proteins related to different metabolic pathways. The heat-responsive proteins mainly include protection proteins, proteins involved in protein biosynthesis, protein degradation, energy and carbohydrate metabolism, and redox homeostasis. In addition, increased thermotolerance in transgenic rice was obtained by overexpression of rice genes and genes from other plants. On the other hand, heterologous expression of some rice proteins led to enhanced thermotolerance in bacteria and other easily transformed plants. In this paper, we review the proteomic characterization of rice in response to high temperature and achievements of genetic engineering for heat tolerance in rice.

摘要

水稻是世界上最重要的粮食作物。全球变暖不可避免地影响了水稻的粮食产量。最近对水稻的蛋白质组学研究为更好地理解其耐热适应机制提供了证据。水稻的热应激反应很复杂,涉及到与不同代谢途径相关的众多蛋白质的上调或下调。热响应蛋白主要包括保护蛋白、参与蛋白质生物合成、蛋白质降解、能量和碳水化合物代谢以及氧化还原平衡的蛋白。此外,通过过表达水稻基因和其他植物基因,获得了转基因水稻的耐热性提高。另一方面,一些水稻蛋白的异源表达导致细菌和其他易于转化的植物的耐热性增强。本文综述了水稻对高温的蛋白质组学特征及水稻耐热性遗传工程的研究进展。

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