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首页> 外文期刊>Critical Reviews in Plant Sciences >Genetic, molecular and genomic basis of rice defense against insects.
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Genetic, molecular and genomic basis of rice defense against insects.

机译:水稻对昆虫防御的遗传,分子和基因组基础。

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Rice is the world's most important staple crop, feeding more than half of the world's population. Insects and other arthropods present an important constraint in rice production. This paper begins with an introduction to major insect pests of rice and their impact, followed by a description of some of the approaches currently used in insect management programs of rice. Then the paper reviews the current understanding of rice defense mechanisms against insects at the levels of genetics, molecular biology and genomics. Some loci that confer resistance to specific type of insects have been and continue to be discovered hand-in-hand with rice breeding programs. Various natural defense strategies of rice against insects illustrate the complexity of rice defense mechanisms that have evolved during the long co-evolutionary history of rice and insects. The molecular mechanisms underlying these natural defenses continue to be elucidated. The availability of the rice genome sequence in conjunction with cutting-edge genomic technologies, including transcriptomics, proteomics and metabolomics, provides scientists an unprecedented opportunity to unravel the functions of rice defense genes against insects at a high-throughput manner. The knowledge and molecular tools developed through these studies will undoubtedly facilitate the development of novel rice varieties with enhanced insect resistance.Digital Object Identifier http://dx.doi.org/10.1080/07352689.2011.616052
机译:稻米是世界上最重要的主食,养活了世界一半以上的人口。昆虫和其他节肢动物是水稻生产的重要制约因素。本文首先介绍了水稻的主要害虫及其影响,然后介绍了目前在水稻昆虫管理计划中使用的一些方法。然后,本文从遗传学,分子生物学和基因组学的角度回顾了水稻对昆虫防御机制的当前理解。与水稻育种计划密切相关的一些对特定类型昆虫具有抗性的基因座已经被并继续被发现。稻米对昆虫的各种自然防御策略说明了稻米和昆虫的长期共同进化历史中形成的稻米防御机制的复杂性。这些自然防御基础的分子机制继续得到阐明。水稻基因组序列的可用性与最先进的基因组技术(包括转录组学,蛋白质组学和代谢组学)相结合,为科学家提供了前所未有的机会,以高通量的方式阐明了水稻防御基因对昆虫的功能。通过这些研究开发的知识和分子工具无疑将促进具有增强抗虫性的水稻新品种的开发。数字对象标识符http://dx.doi.org/10.1080/07352689.2011.616052

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