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EMS1 and BRI1 control separate biological processes via extracellular domain diversity and intracellular domain conservation

机译:EMS1和BRI1通过细胞外域分集和细胞内域保护控制单独的生物过程

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In flowering plants, EMS1 (Excess Microsporocytes 1) perceives TPD1 (Tapetum Determinant 1) to specify tapeta, the last somatic cell layer nurturing pollen development. However, the signaling components downstream of EMS1 are relatively unknown. Here, we use a molecular complementation approach to investigate the downstream components in EMS1 signaling. We show that the EMS1 intracellular domain is functionally interchangeable with that of the brassinosteroid receptor BRI1 (Brassinosteroid Insensitive 1). Furthermore, expressing EMS1 together with TPD1 in the BRI1 expression domain could partially rescue bri1 phenotypes, and led to the dephosphorylation of BES1, a hallmark of active BRI1 signaling. Conversely, expressing BRI1 in the EMS1 expression domain could partially rescue ems1 phenotypes. We further show that PpEMS1 and PpTPD1 from the early land plant Physcomitrella patens could completely rescue ems1 and tpd1 phenotypes, respectively. We propose that EMS1 and BRI1 have evolved distinct extracellular domains to control different biological processes but can act via a common intracellular signaling pathway.
机译:在开花植物中,EMS1(过量的纯微血物质1)感知TPD1(Tapetum确定剂1)来指定TaPeta,这是培养花粉发育的最后体细胞层。然而,EMS1下游的信令组件相对未知。这里,我们使用分子互补方法来研究EMS1信号传导中的下游组分。我们表明EMS1细胞内结构域在功能上可互换地互换(芸苔类固醇不敏感1)。此外,在BRI1表达结构域中与TPD1一起表达EMS1可以部分拯救BRI1表型,并导致BES1的脱磷酸化,活性BRI1信号传导的标志。相反,在EMS1表达域中表达BRI1可以部分拯救EMS1表型。我们进一步表明,来自早期陆地植物Physcomatrella Patens的PPEMS1和PPTPD1可以分别完全拯救EMS1和TPD1表型。我们提出EMS1和BRI1已经进化了不同的细胞外结构域来控制不同的生物过程,而是可以通过普通的细胞内信号传导途径起作用。

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