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Co-option of a photoperiodic growth-phase transition system during land plant evolution

机译:陆地植物进化过程中光周期生长相变系统的共同选择

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Photoperiodic control of the phase transition from vegetative to reproductive growth is critical for land plants. The GIGANTEA (GI) and FLAVIN-BINDING KELCH REPEAT F-BOX1 (FKF1) protein complex controls this process in angiosperms. However, little is known about how plants evolved this regulatory system. Here, we report that orthologues of GI and FKF1 are present in a basal plant, the liverwort Marchantia polymorpha, and describe the molecular interaction between their products. Knockout of either the GI or FKF1 orthologue completely abolishes the long-day-dependent growth-phase transition in M. polymorpha. Overexpression of either gene promotes growth-phase transition, even under short-day conditions. Introduction of the GI orthologue partially rescues the late-flowering phenotype of the Arabidopsis thaliana gi mutant. Our findings suggest that plants had already acquired the GI-FKF1 system to regulate growth-phase transition when they colonized land, and that this system was co-opted from gametophyte to sporophyte generation during evolution.
机译:光周期控制从营养生长到生殖生长的相变对于陆地植物至关重要。 GIGANTEA(GI)和结合黄素的KELCH REPEAT F-BOX1(FKF1)蛋白复合物控制被子植物的这一过程。但是,人们对植物如何进化这种调控系统知之甚少。在这里,我们报道GI和FKF1的直向同源物存在于一种基础植物-地形草多形的Marchantia polymorpha中,并描述了它们之间的分子相互作用。 GI或FKF1直向同源物的敲除完全消除了多形支原体中长日依赖的生长期过渡。即使在短期条件下,任何一个基因的过表达也会促进生长期的过渡。 GI直向同源物的引入部分拯救了拟南芥gi突变体的晚开花表型。我们的发现表明,植物在殖民地时已经获得了GI-FKF1系统来调节生长期过渡,并且该系统在进化过程中被从配子体转化为孢子体。

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