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AGAMOUS Terminates Floral Stem Cell Maintenance in Arabidopsis by Directly Repressing WUSCHEL through Recruitment of Polycomb Group Proteins

机译:AGAMOUS通过募集Polycomb组蛋白直接抑制WUSCHEL终止了拟南芥中的花干细胞维持

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摘要

Floral stem cells produce a defined number of floral organs before ceasing to be maintained as stem cells. Therefore, floral stem cells offer an ideal model to study the temporal control of stem cell maintenance within a developmental context. AGAMOUS (AG), a MADS domain transcription factor essential for the termination of floral stem cell fate, has long been thought to repress the stem cell maintenance gene WUSCHEL (WUS) indirectly. Here, we uncover a role of Polycomb Group (PcG) genes in the temporally precise repression of WUS expression and termination of floral stem cell fate. We show that AG directly represses WUS expression by binding to the WUS locus and recruiting, directly or indirectly, PcG that methylates histone H3 Lys-27 at WUS. We also show that PcG acts downstream of AG and probably in parallel with the known AG target KNUCKLES to terminate floral stem cell fate. Our studies identify core components of the network governing the temporal program of floral stem cells.
机译:花干细胞在停止维持为干细胞之前会产生一定数量的花器官。因此,花卉干细胞提供了一个理想的模型来研究发育环境中干细胞维持的时间控制。长期以来,人们一直认为AGAMOUS(AG)是终止花卉干细胞命运必不可少的MADS结构域转录因子,它间接地抑制了干细胞维持基因WUSCHEL(WUS)。在这里,我们揭示了Polycomb Group(PcG)基因在时间上精确抑制WUS表达和终止花干细胞命运的作用。我们显示AG通过绑定到WUS基因座并直接或间接募集在WUS甲基化组蛋白H3 Lys-27的PcG直接抑制WUS表达。我们还表明,PcG在AG的下游起作用,并且可能与已知的AG靶KNUCKLES平行终止花干细胞的命运。我们的研究确定了支配花卉干细胞时间程序的网络核心成分。

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