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NRPB3, the third largest subunit of RNA polymerase II, is essential for stomatal patterning and differentiation in Arabidopsis

机译:NRPB3是RNA聚合酶II的第三大亚基,对于拟南芥气孔模式和分化至关重要

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摘要

Stomata are highly specialized epidermal structures that control transpiration and gas exchange between plants and the environment. Signal networks underlying stomatal development have been previously uncovered but much less is known about how signals involved in stomatal development are transmitted to RNA polymerase II (Pol II or RPB), which plays a central role in the transcription of mRNA coding genes. Here, we identify a partial loss-of-function mutation of the third largest subunit of nuclear DNA-dependent Pol II (NRPB3) that exhibits an increased number of stomatal lineage cells and paired stomata. Phenotypic and genetic analyses indicated that NRPB3 is not only required for correct stomatal patterning, but is also essential for stomatal differentiation. Protein-protein interaction assays showed that NRPB3 directly interacts with two basic helixloop-helix (bHLH) transcription factors, FAMA and INDUCER OF CBF EXPRESSION1 (ICE1), indicating that NRPB3 serves as an acceptor for signals from transcription factors involved in stomatal development. Our findings highlight the surprisingly conserved activating mechanisms mediated by the third largest subunit of Pol II in eukaryotes.
机译:气孔是高度专业化的表皮结构,可控制植物与环境之间的蒸腾作用和气体交换。气孔发育的基础信号网络先前尚未发现,但有关气孔发育的信号如何传递至RNA聚合酶II(Pol II或RPB)的信息知之甚少,RNA聚合酶II在mRNA编码基因的转录中起着核心作用。在这里,我们确定了核DNA依赖的Pol II(NRPB3)的第三大亚基的部分功能丧失突变,该突变表现出增加的气孔谱系细胞和成对的气孔。表型和遗传分析表明,NRPB3不仅是正确的气孔模式所必需的,而且对于气孔的分化也是必不可少的。蛋白质-蛋白质相互作用测定法显示NRPB3与两个基本的螺旋环-螺旋(bHLH)转录因子FAMA和CBF EXPRESSION1(ICE1)的诱导因子直接相互作用,表明NRPB3充当来自与气孔发育有关的转录因子信号的受体。我们的发现突出了真核生物中由Pol II第三大亚基介导的令人惊讶的保守激活机制。

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