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用于解读环境胁迫响应和纤维发育机制的棉花蛋白质组学

Cotton proteomics for deciphering the mechanism of environment stress response and fiber development.

作者信息

Zhou Meiliang, Sun Guoqing, Sun Zhanmin, Tang Yixiong, Wu Yanmin

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China; Institute of Biology, Leiden University, Sylvius Laboratory, Sylviusweg 72, 2333 BE Leiden, The Netherlands.

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

出版信息

J Proteomics. 2014 Jun 13;105:74-84. doi: 10.1016/j.jprot.2014.03.017. Epub 2014 Mar 27.

Abstract

UNLABELLED

Cotton fiber is considered as the backbone of the textile industry. The productivity of cotton crop is severely hampered by the occurrence of pathogens, pests, and various environmental factors. Nevertheless, cotton plant has developed sophisticated mechanisms to respond to environment stresses to avoid detrimental effects on its growth and development. Therefore, understanding the mechanisms of cotton fiber development and environment stress response is of considerable interest for designing agriculture breeding strategies to ensure sustainable productivity. The application of proteomics technologies to advance our knowledge in cotton fiber development and abiotic/biotic stress tolerance has increased dramatically in the last 5years as evidenced by the large amount of publications in this area. This review summarizes the work which has been reported for cotton proteomics and evaluates the findings in context of the approaches that are widely employed with the aim to generate novel insight useful for cotton improvement.

BIOLOGICAL SIGNIFICANCE

Cotton (Gossypium spp.) is considered as the foremost commercially important fiber crop grown all over the world and is deemed as the backbone of the textile industry. Cotton is also an important source of edible oil seed and a nutrient-rich food crop as cottonseed contains high-quality protein and oil. The growth and productivity of cotton crop are often hampered by various biotic stress factors, such as insect pests and pathogens. In addition, cotton plants are frequently subjected to unavoidable environmental factors that cause abiotic stress, such as salt, heat and drought. Proteomic techniques provide one of the best options for understanding the gene function and phenotypic changes during cotton fiber development and stress response. This review first summarizes the work which has been reported for cotton proteomics about cotton fiber development and abiotic/biotic stress tolerance, and also evaluates the findings in context of the approaches that are widely employed during last 5years, with the aim to generate novel insight useful for cotton improvement. This article is part of a Special Issue entitled: Proteomics of non-model organisms.

摘要

未标注

棉纤维被视为纺织工业的支柱。棉花作物的生产力受到病原体、害虫和各种环境因素的严重影响。然而,棉花植株已形成了复杂的机制来应对环境胁迫,以避免对其生长发育产生不利影响。因此,了解棉花纤维发育和环境胁迫响应的机制对于设计农业育种策略以确保可持续生产力具有重要意义。蛋白质组学技术在促进我们对棉花纤维发育以及非生物/生物胁迫耐受性方面的知识增长方面的应用,在过去五年中大幅增加,该领域大量的出版物证明了这一点。本综述总结了已报道的棉花蛋白质组学研究工作,并结合广泛采用的方法对研究结果进行评估,旨在获得有助于棉花改良的新见解。

生物学意义

棉花(棉属物种)被认为是全球最重要的商业纤维作物,是纺织工业的支柱。棉花也是食用油籽的重要来源,并且作为棉籽含有高质量的蛋白质和油脂,它还是一种营养丰富的粮食作物。棉花作物的生长和生产力常常受到各种生物胁迫因素的影响,如害虫和病原体。此外,棉花植株经常受到不可避免的环境因素影响,从而导致非生物胁迫,如盐害、热害和干旱。蛋白质组学技术为理解棉花纤维发育和胁迫响应过程中的基因功能及表型变化提供了最佳选择之一。本综述首先总结了已报道的关于棉花纤维发育以及非生物/生物胁迫耐受性的棉花蛋白质组学研究工作,还结合过去五年广泛采用的方法对研究结果进行评估,旨在获得有助于棉花改良的新见解。本文是名为“非模式生物蛋白质组学”特刊的一部分。

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