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Rice functional genomics research: progress and implications for crop genetic improvement. (Special Issue: Biotechnology for a more sustainable world.)

机译:水稻功能基因组学研究:进展和对作物遗传改良的影响。 (特刊:生物技术,一个更可持续的世界。)

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摘要

Rice is a staple food crop and has become a reference of monocot plant for functional genomic research. With the availability of high quality rice genome sequence, there has been rapid accumulation of functional genomic resources, including: large mutant libraries by T-DNA insertion, transposon tagging, and chemical mutagenesis; global expression profiles of the genes in the entire life cycle of rice growth and development; full-length cDNAs for both indica and japonica rice; sequences from resequencing large numbers of diverse germplasm accessions. Such resource development has greatly accelerated gene cloning. By the end of 2010, over 600 genes had been cloned using various methods. Many of the genes control agriculturally useful traits such as yield, grain quality, resistances to biotic and abiotic stresses, and nutrient-use efficiency, thus have potential utility in crop genetic improvement. This review was aimed to provide a comprehensive summary of such progress. We also presented our perspective for future studies.
机译:水稻是主食作物,已成为功能基因组研究的单子叶植物参考。随着高质量水稻基因组序列的获得,功能基因组资源已迅速积累,包括:通过T-DNA插入,​​转座子标记和化学诱变产生的大型突变体文库;这些基因在水稻生长发育的整个生命周期中的全球表达谱; in稻和粳稻的全长cDNA;重测序大量不同种质材料的序列。这种资源开发极大地加速了基因克隆。截至2010年底,已使用多种方法克隆了600多个基因。许多基因控制着农业上有用的性状,例如产量,谷物品质,对生物和非生物胁迫的抗性以及养分利用效率,因此在作物遗传改良中具有潜在的用途。此次审查旨在提供有关此类进展的全面摘要。我们还提出了我们未来研究的观点。

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