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Functional genomics based understanding of rice endosperm development. (Special Issue: Genome studies and molecular genetics.)

机译:基于功能基因组学的水稻胚乳发育理解。 (特刊:基因组研究和分子遗传学。)

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摘要

Seed development, especially the relevant regulatory mechanism and genetic network are of fundamental scientific interest. Seed development consists of the development of embryo and endosperm; and endosperm development of rice (model species of monocots) is closely related to grain yield and quality. Recent genetic studies, together with other approaches, including transcriptome and proteomics analysis, high-throughput sequencing (RNA-seq, ChIP-seq), revealed the crucial roles of genetic and epigenetic controls in rice endosperm development. Here we summarize and update the genetic networks involved in the regulation of endosperm initiation, cell cycle regulation, aleurone layer specification, starch synthesis, storage protein accumulation and endosperm size, and the interactions between embryo and endosperm.
机译:种子发育,特别是相关的调控机制和遗传网络具有根本的科学意义。种子的发育包括胚和胚乳的发育。水稻(单子叶植物的典型物种)的胚乳发育与谷物的产量和品质密切相关。最近的遗传研究以及其他方法,包括转录组和蛋白质组学分析,高通量测序(RNA-seq,ChIP-seq),揭示了遗传和表观遗传控制在水稻胚乳发育中的关键作用。在这里,我们总结并更新了涉及胚乳起始调控,细胞周期调控,糊粉层规格,淀粉合成,贮藏蛋白积累和胚乳大小以及胚与胚乳之间相互作用的遗传网络。

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