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Arabidopsis WUSCHEL Is a Bifunctional Transcription Factor That Acts as a Repressor in Stem Cell Regulation and as an Activator in Floral Patterning

机译:拟南芥WUSCHEL是一种双功能转录因子在干细胞调节中起阻遏作用在花卉图案中起活化作用

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摘要

Most transcription factors act either as activators or repressors, and no such factors with dual function have been unequivocally identified and characterized in plants. We demonstrate here that the Arabidopsis thaliana protein WUSCHEL (WUS), which regulates the maintenance of stem cell populations in shoot meristems, is a bifunctional transcription factor that acts mainly as a repressor but becomes an activator when involved in the regulation of the AGAMOUS (AG) gene. We show that the WUS box, which is conserved among WOX genes, is the domain that is essential for all the activities of WUS, namely, for regulation of stem cell identity and size of floral meristem. All the known activities of WUS were eliminated by mutation of the WUS box, including the ability of WUS to induce the expression of AG. The mutation of the WUS box was complemented by fusion of an exogenous repression domain, with resultant induction of somatic embryogenesis in roots and expansion of floral meristems as observed upon ectopic expression of WUS. By contrast, fusion of an exogenous activation domain did not result in expanded floral meristems but induced flowers similar to those induced by the ectopic expression of AG. Our results demonstrate that WUS acts mainly as a repressor and that its function changes from that of a repressor to that of an activator in the case of regulation of the expression of AG.
机译:大多数转录因子充当激活物或阻遏物,并且在植物中没有明确鉴定和表征具有双重功能的此类因子。我们在这里证明,拟南芥蛋白WUSCHEL(WUS)调节芽分生组织中干细胞群体的维持,是一种双功能转录因子,主要充当阻遏物,但在参与调控AGAMOUS(AG )基因。我们显示WUS框,这是WOX基因之间的保守,是域的WUS的所有活动,即调节干细胞的身份和花分生组织的大小至关重要。 WUS盒的所有突变都消除了WUS的所有已知活性,包括WUS诱导AG表达的能力。 WUS盒的突变通过外源阻抑结构域的融合得到补充,如在WUS异位表达时所观察到的,导致根中体细胞胚发生的诱导和花分生组织的扩展。相比之下,外源激活域的融合并没有导致花分生组织的扩增,而是诱导了与由AG异位表达诱导的花相似的花。我们的结果表明,WUS主要起阻遏物的作用,并且在调节AG表达的情况下,其功能从阻遏物变为激活物。

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