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Transcription factors regulating the progression of monocot and dicot seed development.

机译:转录因子调节单子叶植物和双子叶植物种子发育的进程。

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Seed development in this paper has been classified into the three landmark stages of cell division, organ initiation and maturation, based on morphological changes, and the available literature. The entire process proceeds at the behest of an interplay of various specific and general transcription factors (TFs). Monocots and dicots utilize overlapping, as well as distinct, TF networks during the process of seed development. The known TFs in rice and Arabidopsis have been chronologically categorized into the three stages. The main regulators of seed development contain B3 or HAP3 domains. These interact with bZIP and AP2 TFs. Other TFs that play an indispensable role during the process contain homeobox-, NAC-, MYB-, or ARF-domains. This paper is a comprehensive analysis of the TFs essential for seed development and their interactions. An understanding of this interplay will not only help unravel an integrated developmental process, but will also pave the way for biotechnological applications.
机译:根据形态变化和现有文献,本文将种子发育分为细胞分裂,器官启动和成熟的三个标志性阶段。整个过程是在各种特定和通用转录因子(TF)相互作用的条件下进行的。单子叶植物和双子叶植物在种子发育过程中利用重叠的TF网络。水稻和拟南芥中已知的TF已按时间顺序分为三个阶段。种子发育的主要调控因子包含B3或HAP3结构域。这些与bZIP和AP2 TF交互。在此过程中起不可或缺作用的其他TF包含homeobox,NAC,MYB或ARF域。本文是对种子发育及其相互作用必不可少的TF的综合分析。对这种相互作用的理解将不仅有助于阐明一个完整的发展过程,而且还将为生物技术应用铺平道路。

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