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首页> 外文期刊>Molecular biology reports >Miniature inverted-repeat transposable elements (MITEs), derived insertional polymorphism as a tool of marker systems for molecular plant breeding
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Miniature inverted-repeat transposable elements (MITEs), derived insertional polymorphism as a tool of marker systems for molecular plant breeding

机译:微型倒置重复转换元素(螨虫),衍生的插入多态性作为分子植物育种的标记系统的工具

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摘要

Plant molecular breeding is expected to give significant gains in cultivar development through development and utilization of suitable molecular marker systems for genetic diversity analysis, rapid DNA fingerprinting, identification of true hybrids, trait mapping and marker-assisted selection. Transposable elements (TEs) are the most abundant component in a genome and being used as genetic markers in the plant molecular breeding. Here, we review on the high copious transposable element belonging to class-II DNA TEs called "miniature inverted-repeat transposable elements" (MITEs). MITEs are ubiquitous, short and non-autonomous DNA transposable elements which have a tendency to insert into genes and genic regions have paved a way for the development of functional DNA marker systems in plant genomes. This review summarises the characteristics of MITEs, principles and methodologies for development of MITEs based DNA markers, bioinformatics tools and resources for plant MITE discovery and their utilization in crop improvement.
机译:植物分子育种预计通过开发和利用适用于遗传多样性分析,快速DNA指纹,鉴定真正的杂种,特质映射和标记辅助选择,通过开发和利用产生显着提高品种发展。转移元素(TES)是基因组中最丰富的组分,并用作植物分子育种中的遗传标志物。在此,我们审查属于II类DNA TES的高原可转换元素,称为“微型倒置重复转换元素”(螨虫)。螨虫是普遍存在的,短的和非自主的DNA转换元件,其倾向于将基因和遗传区域涂覆为植物基因组中的功能性DNA标记系统的发展方法。本综述总结了基于螨虫的DNA标记,生物信息学工具和植物螨发现的生物信息学工具和资源以及作物改善的利用的特征。

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