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Research progress on the autonomous flowering time pathway in Arabidopsis

机译:拟南芥自主开花时间途径的研究进展

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摘要

The transition from vegetative to reproductive growth phase is a pivotal and complicated process in the life cycle of flowering plants which requires a comprehensive response to multiple environmental aspects and endogenous signals. In Arabidopsis, six regulatory flowering time pathways have been defined by their response to distinct cues, namely photoperiod, vernalization, gibberellin, temperature, autonomous and age pathways, respectively. Among these pathways, the autonomous flowering pathway accelerates flowering independently of day length by inhibiting the central flowering repressor FLC. FCA, FLD, FLK, FPA, FVE, FY and LD have been widely known to play crucial roles in this pathway. Recently, AGL28, CK2, DBP1, DRM1, DRM2, ESD4, HDA5, HDA6, PCFS4, PEP, PP2A-B’γ, PRMT5, PRMT10, PRP39-1, REF6, and SYP22 have also been shown to be involved in the autonomous flowering time pathway. This review mainly focuses on FLC RNA processing, chromatin modification of FLC, post-translational modification of FLC and other molecular mechanisms in the autonomous flowering pathway of Arabidopsis.
机译:从营养生长阶段到生殖生长阶段的转变是开花植物生命周期中的关键而复杂的过程,需要对多种环境因素和内源性信号做出全面响应。在拟南芥中,通过对不同线索的响应定义了六个调节性开花时间途径,分别是光周期,春化,赤霉素,温度,自主性和衰老途径。在这些途径中,自主开花途径通过抑制中央开花阻遏物FLC来独立于日长促进开花。 FCA,FLD,FLK,FPA,FVE,FY和LD在此途径中起着至关重要的作用。最近,还显示出AGL28,CK2,DBP1,DRM1,DRM2,ESD4,HDA5,HDA6,PCFS4,PEP,PP2A-B'γ,PRMT5,PRMT10,PRP39-1,REF6和SYP22也参与了自治。开花时间通路。这篇综述主要侧重于拟南芥自主开花途径中的FLC RNA加工,FLC的染色质修饰,FLC的翻译后修饰以及其他分子机制。

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