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Integrative genome-wide analysis reveals the role of WIP proteins in inhibition of growth and development

机译:综合基因组宽分析揭示了WIP蛋白在抑制生长和发育中的作用

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In cucurbits, CmWIP1 is a master gene controlling sex determination. To bring new insight in the function of CmWIP1, we investigated two Arabidopsis WIP transcription factors, AtWIP1/TT1 and AtWIP2/NTT. Using an inducible system we showed that WIPs are powerful inhibitor of growth and inducer of cell death. Using ChIP-seq and RNA-seq we revealed that most of the up-regulated genes bound by WIPs display a W-box motif, associated with stress signaling. In contrast, the down-regulated genes contain a GAGA motif, a known target of polycomb repressive complex. To validate the role of WIP proteins in inhibition of growth, we expressed AtWIP1/TT1 in carpel primordia and obtained male flowers, mimicking CmWIP1 function in melon. Using other promoters, we further demonstrated that WIPs can trigger growth arrest of both vegetative and reproductive organs. Our data supports an evolutionary conserved role of WIPs in recruiting gene networks controlling growth and adaptation to stress. Maria V Gomez Roldan, Farhaj Izhaq et al. study the role of WIP transcription factors in Arabidopsis thaliana. Using an inducible system, they generate ChIP-seq and RNA-seq data that reveal how WIP proteins repress development and growth. Through ectopic expression of WIP in Arabidopsis carpels, they obtain male flower, mimicking sex determination in melon.
机译:在葫芦中,CMWIP1是控制性别测定的主要基因。为了对CMWIP1的功能带来新的洞察,我们调查了两种拟南芥WIP转录因子,ATWIP1 / TT1和ATWIP2 / NTT。使用诱导系统,我们显示WIPS是一种强大的生长抑制剂和细胞死亡的诱导剂。使用CHIP-SEQ和RNA-SEQ我们透露,由WIPS结合的大多数上调基因显示了与应力信号传导相关的W字幕图案。相反,下调基因含有GAGA基序,一种已知的Polycomb压抑复合物的靶标。为了验证WIP蛋白在抑制生长中的作用,我们在Carpel Primordia中表达ATWIP1 / TT1,并获得了雄性花朵,在甜瓜中模仿CMWIP1功能。使用其他启动子,我们进一步证明WIPS可以引发营养和生殖器官的生长逮捕。我们的数据支持在招聘基因网络控制增长和适应压力的基因网络中的进化保守作用。 Maria V Gomez Roldan,Farhaj Izhaq等。研究WIP转录因子在拟南芥中的作用。使用诱导系统,它们产生芯片SEQ和RNA-SEQ数据,揭示WIP蛋白质如何抑制发育和生长。通过在拟南芥心皮中的异位表达,他们获得雄花,模仿甜瓜的性别测定。

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