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Ehd2 a Rice Ortholog of the Maize INDETERMINATE1 Gene Promotes Flowering by Up-Regulating Ehd1

机译:玉米INDETERMINATE1基因的直系同源基因Ehd2通过上调Ehd1促进开花

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Recent research into the flowering of rice (Oryza sativa) has revealed both unique and conserved genetic pathways in the photoperiodic control of flowering compared with those in Arabidopsis (Arabidopsis thaliana). We discovered an early heading date2 (ehd2) mutant that shows extremely late flowering under both short- and long-day conditions in line with a background deficient in Heading date1 (Hd1), a rice CONSTANS ortholog that belongs to the conserved pathway. This phenotype in the ehd2 mutants suggests that Ehd2 is pivotal for the floral transition in rice. Map-based cloning revealed that Ehd2 encodes a putative transcription factor with zinc finger motifs orthologous to the INDETERMINATE1 (ID1) gene, which promotes flowering in maize (Zea mays). Ehd2 mRNA in rice tissues accumulated most abundantly in developing leaves, but was present at very low levels around the shoot apex and in roots, patterns that are similar to those of ID1. To assign the position of Ehd2 within the flowering pathway of rice, we compared transcript levels of previously isolated flowering-time genes, such as Ehd1, a member of the unique pathway, Hd3a, and Rice FT-like1 (RFT1; rice florigens), between the wild-type plants and the ehd2 mutants. Severely reduced expression of these genes in ehd2 under both short- and long-day conditions suggests that Ehd2 acts as a flowering promoter mainly by up-regulating Ehd1 and by up-regulating the downstream Hd3a and RFT1 genes in the unique genetic network of photoperiodic flowering in rice.
机译:水稻(Oryza sativa)开花的最新研究表明,与拟南芥(Arabidopsis thaliana)相比,光周期开花控制具有独特而保守的遗传途径。我们发现了一个早期抽穗date2(ehd2)突变体,该突变体在短期和长期条件下均表现出极晚的开花期,这与水稻双穗直系同源基因(属于保守途径)的抽穗date1(Hd1)缺乏相关。 ehd2突变体中的这种表型表明Ehd2对于水稻的花期转化至关重要。基于图谱的克隆显示,Ehd2编码一个假定的转录因子,该转录因子具有与INDETERMINATE1(ID1)基因直系的锌指基序,从而促进玉米(Zea mays)的开花。水稻组织中的Ehd2 mRNA在发育中的叶子中积累最丰富,但在茎尖周围和根中的含量非常低,与ID1相似。为了指定Ehd2在水稻开花途径中的位置,我们比较了先前分离的开花时间基因(例如 Hd3a 的成员 Ehd1 )的转录水平>和 Rice FT-like1 RFT1 ;水稻花絮)之间,位于野生型植物和 ehd2 突变体之间。在短期和长期条件下,这些基因在 ehd2 中的表达均大大降低,这表明 Ehd2 主要通过上调 Ehd1 来充当开花启动子。 em>并通过上调光周期开花的独特遗传网络中的下游 Hd3a RFT1 基因。

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