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Transcriptional and Post-transcriptional Mechanisms Limit Heading Date 1 (Hd1) Function to Adapt Rice to High Latitudes

机译:转录和转录后机制限制了抽穗日期1(Hd1)的功能使水稻适应高纬度

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摘要

Rice flowering is controlled by changes in the photoperiod that promote the transition to the reproductive phase as days become shorter. Natural genetic variation for flowering time has been largely documented and has been instrumental to define the genetics of the photoperiodic pathway, as well as providing valuable material for artificial selection of varieties better adapted to local environments. We mined genetic variation in a collection of rice varieties highly adapted to European regions and isolated distinct variants of the long day repressor HEADING DATE 1 (Hd1) that perturb its expression or protein function. Specific variants allowed us to define novel features of the photoperiodic flowering pathway. We demonstrate that a histone fold domain scaffold formed by GRAIN YIELD, PLANT HEIGHT AND HEADING DATE 8 (Ghd8) and several NF-YC subunits can accommodate distinct proteins, including Hd1 and PSEUDO RESPONSE REGULATOR 37 (PRR37), and that the resulting OsNF-Y complex containing Hd1 can bind a specific sequence in the promoter of HEADING DATE 3A (Hd3a). Artificial selection has locally favored an Hd1 variant unable to assemble in such heterotrimeric complex. The causal polymorphism was defined as a single conserved lysine in the CCT domain of the Hd1 protein. Our results indicate how genetic variation can be stratified and explored at multiple levels, and how its description can contribute to the molecular understanding of basic developmental processes.
机译:水稻的开花受到光周期变化的控制,随着时间的缩短,光周期的变化会促进过渡到生殖期。开花时间的自然遗传变异已得到大量文献记载,并有助于确定光周期途径的遗传,并为人工选择更适合当地环境的品种提供了有价值的材料。我们从高度适应欧洲地区的水稻品种中挖掘了遗传变异,并分离了干扰其表达或蛋白质功能的全天阻遏物HEADING DATE 1(Hd1)的不同变异。特定的变体使我们能够定义光周期开花途径的新特征。我们证明了由谷物产量,植物高度和抽穗日期8(Ghd8)和几个NF-YC亚基形成的组蛋白折叠结构域支架可以容纳不同的蛋白质,包括Hd1和PSEUDO RESREGSE REGULATOR 37(PRR37),以及由此产生的OsNF-含有Hd1的Y复合物可以结合HEADING DATE 3A(Hd3a)启动子中的特定序列。人工选择在本地有利于不能在这种异源三聚体复合物中装配的Hd1变体。因果多态性定义为Hd1蛋白CCT域中的单个保守赖氨酸。我们的结果表明遗传变异如何可以在多个层面上进行分层和探索,以及其描述如何有助于对基本发育过程的分子理解。

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