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Genetic and Epigenetic Regulatory Mechanism of Rice Panicle Development

机译:水稻穗发育的遗传与表观遗传调节机制

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Rice panicle architecture is a key agronomical trait that directly contributes to grain productivity. The complexity of the developmental process of the young panicle determines the complexity of its regulatory molecular mechanism. This paper briefly introduces the general process of panicle development and summarizes the important genes/quantitative trait loci regulating panicle development, identified and characterized by mutant screening and map cloning in recent years. According to their roles in the rice panicle development process, these genes are divided into 3 categories: initiation and maintenance of axillary meristems, size of meristem, and elongation of the branches. In recent years, knowledge on the epigenetic regulatory mechanism of panicle development has improved. In addition, development of the young panicle has been confirmed to be closely related to the regulation of plant hormones. Finally, the new genome editing tool clustered regularly interspaced short palindromic repeats/associated protein-9 nuclease and epigenome-wide association studies are expected to contribute to further understand the molecular mechanisms of panicle development, which might help improving panicle traits for increasing grain yield.
机译:米穗架构是一个主要的农艺特征,直接有助于粮食生产率。年轻穗发育过程的复杂性决定了其调节分子机制的复杂性。本文简要介绍了幼穗发育的一般过程,并总结了重要基因/数量性状基因调控幼穗发育,识别和特征的突变体的筛选和地图近年来克隆。根据他们在水稻穗发育过程中的作用,这些基因分为3个类别:启动和维持腋生分泌,分类的大小和分支的伸长率。近年来,关于穗发育的表观遗传调节机制的知识得到了改善。此外,已经证实了年轻穗的发展与植物激素的调节密切相关。最后,预期新的基因组编辑工具集群定期间隙的短语重复/相关蛋白质-9核酸酶和表观群组合协会研究有助于进一步了解胰穗发育的分子机制,这可能有助于改善谷物产量增加的碱性状。

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