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首页> 外文期刊>Plant physiology >PINOID AGC Kinases Are Necessary for Phytochrome-Mediated Enhancement of Hypocotyl Phototropism in Arabidopsis
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PINOID AGC Kinases Are Necessary for Phytochrome-Mediated Enhancement of Hypocotyl Phototropism in Arabidopsis

机译:PINOID AGC激酶是植物色素介导的拟南芥下胚轴向光性增强的必要条件。

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Several members of the AGCVIII kinase subfamily, which includes PINOID (PID), PID2, and WAVY ROOT GROWTH (WAG) proteins, have previously been shown to phosphorylate PIN-FORMED (PIN) auxin transporters and control the auxin flow in plants. PID has been proposed as a key component of the phototropin signaling pathway that induces phototropic responses, although the responses were not significantly impaired in the pid single and pid wag1 wag2 triple mutants. This raises questions about the functional roles of the PID family in phototropic responses. Here, we investigated hypocotyl phototropism in the pid pid2 wag1 wag2 quadruple mutant in detail to clarify the roles of the PID family in Arabidopsis (Arabidopsis thaliana). The pid quadruple mutants exhibited moderate responses in continuous light-induced phototropism with a decrease in growth rates of hypocotyls and normal responses in pulse-induced phototropism. However, they showed serious defects in enhancements of pulse-induced phototropic curvatures and lateral fluorescent auxin transport by red light pretreatment. Red light pretreatment significantly reduced the expression level of PID, and the constitutive expression of PID prevented pulse-induced phototropism, irrespective of red light pretreatment. This suggests that the PID family plays a significant role in phytochrome-mediated phototropic enhancement but not the phototropin signaling pathway. Red light treatment enhanced the intracellular accumulation of PIN proteins in response to the vesicle-trafficking inhibitor brefeldin A in addition to increasing their expression levels. Taken together, these results suggest that red light preirradiation enhances phototropic curvatures by upregulation of PIN proteins, which are not being phosphorylated by the PID family.
机译:AGCVIII激酶亚家族的几个成员,包括PINOID(PID),PID2和WAVY ROOT GROWTH(WAG)蛋白,以前已被证明可以使PIN形成(PIN)生长素转运蛋白磷酸化,并控制植物中的生长素流动。 PID已被提议为诱导趋光性反应的光养蛋白信号传导途径的关键组成部分,尽管在pid单和pid wag1 wag2三重突变体中反应并未受到明显损害。这就提出了关于PID系列在光致响应中的功能角色的问题。在这里,我们详细研究了pid pid2 wag1 wag2四重突变体中的胚轴向光性,以阐明PID家族在拟南芥(Arabidopsis thaliana)中的作用。 pid四倍体突变体在连续光诱导的向光性中表现出中等响应,而下胚轴的生长速率降低,而脉冲诱导的向光性则表现出正常响应。然而,它们在通过红光预处理增强脉冲诱导的向光弯曲和横向荧光生长素运输方面显示出严重缺陷。红光预处理显着降低PID的表达水平,PID的本构表达可防止脉冲诱导的向光性,而与红光预处理无关。这表明PID家族在植物色素介导的光致增强中起重要作用,但在光养蛋白信号传导途径中不起作用。红光处理除了增加其表达水平外,还响应于囊泡运输抑制剂布雷菲德菌素A增强了PIN蛋白在细胞内的积累。综上所述,这些结果表明,红光预辐射通过PIN蛋白的上调增强了向光性曲率,而PIN蛋白并未被PID家族磷酸化。

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