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Orchestration of the Floral Transition and Floral Development in Arabidopsis by the Bifunctional Transcription Factor APETALA2

机译:双功能转录因子APETALA2对拟南芥中花过渡和花发育的编排。

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摘要

The Arabidopsis thaliana transcription factor APETALA2 (AP2) has numerous functions, including roles in seed development, stem cell maintenance, and specification of floral organ identity. To understand the relationship between these different roles, we mapped direct targets of AP2 on a genome-wide scale in two tissue types. We find that AP2 binds to thousands of loci in the developing flower, many of which exhibit AP2-dependent transcription. Opposing, logical effects are evident in AP2 binding to two microRNA genes that influence AP2 expression, with AP2 positively regulating miR156 and negatively regulating miR172, forming a complex direct feedback loop, which also included all but one of the AP2-like miR172 target clade members. We compare the genome-wide direct target repertoire of AP2 with that of SCHLAFMÜTZE, a closely related transcription factor that also represses the transition to flowering. We detect clear similarities and important differences in the direct target repertoires that are also tissue specific. Finally, using an inducible expression system, we demonstrate that AP2 has dual molecular roles. It functions as both a transcriptional activator and repressor, directly inducing the expression of the floral repressor AGAMOUS-LIKE15 and directly repressing the transcription of floral activators like SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1.
机译:拟南芥转录因子APETALA2(AP2)具有许多功能,包括在种子发育,干细胞维持和花器官识别特性方面的作用。为了了解这些不同角色之间的关系,我们在两种组织类型的全基因组范围内绘制了AP2的直接靶标。我们发现AP2绑定到正在发展的花朵中的数千个基因座,其中许多表现出依赖于AP2的转录。相反,AP2与影响AP2表达的两个microRNA基因的结合具有明显的逻辑效应,其中AP2正调节miR156和负调节miR172,形成一个复杂的直接反馈环,该环除了一个像AP2的miR172目标进化枝成员之外,还包括其他成员。 。我们比较了AP2和SCHLAFMÜTZE的全基因组直接靶标库,SCHLAFMÜTZE是一个密切相关的转录因子,也抑制了向开花的过渡。我们检测到直接靶标的清晰相似性和重要差异,这些靶标也是组织特异性的。最后,使用诱导型表达系统,我们证明AP2具有双重分子作用。它既起转录激活因子的作用,又起抑制因子的作用,直接诱导花卉抑制因子AGAMOUS-LIKE15的表达,并直接抑制花卉激活因子的转录,例如CONSTANS1过表达的SUPPRESSOR。

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