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VLN2 Regulates Plant Architecture by Affecting Microfilament Dynamics and Polar Auxin Transport in Rice

机译:VLN2通过影响水稻中的微丝动力学和极性生长素转运来调节植物结构。

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摘要

As a fundamental and dynamic cytoskeleton network, microfilaments () are regulated by diverse actin binding proteins (ABPs). Villins are one type of ABPs belonging to the villin/gelsolin superfamily, and their function is poorly understood in monocotyledonous plants. Here, we report the isolation and characterization of a rice (Oryza sativa) mutant defective in VILLIN2 (VLN2), which exhibits malformed organs, including twisted roots and shoots at the seedling stage. Cellular examination revealed that the twisted phenotype of the vln2 mutant is mainly caused by asymmetrical expansion of cells on the opposite sides of an organ. VLN2 is preferentially expressed in growing tissues, consistent with a role in regulating cell expansion in developing organs. Biochemically, VLN2 exhibits conserved actin filament bundling, severing and capping activities in vitro, with bundling and stabilizing activity being confirmed in vivo. In line with these findings, the vln2 mutant plants exhibit a more dynamic actin cytoskeleton network than the wild type. We show that vln2 mutant plants exhibit a hypersensitive gravitropic response, faster recycling of PIN2 (an auxin efflux carrier), and altered auxin distribution. Together, our results demonstrate that VLN2 plays an important role in regulating plant architecture by modulating dynamics, recycling of PIN2, and polar auxin transport.
机译:作为基本的动态细胞骨架网络,微丝()受多种肌动蛋白结合蛋白(ABP)调节。韦林斯是属于维尔林/凝溶胶蛋白超家族的一种ABP,在单子叶植物中对它们的功能了解甚少。在这里,我们报道了在VILLIN2(VLN2)中有缺陷的水稻(Oryza sativa)突变体的分离和鉴定,该突变体在幼苗期表现出畸形的器官,包括扭曲的根和芽。细胞检查显示,vln2突变体的扭曲表型主要是由器官相对侧细胞的不对称膨胀引起的。 VLN2优先在生长的组织中表达,这与调节发育中的器官的细胞扩张作用一致。生化方面,VLN2在体外表现出保守的肌动蛋白丝束捆扎,切断和封盖活性,在体内已证实了束缚和稳定化活性。符合这些发现,vln2突变植物比野生型植物显示出更多的动态肌动蛋白细胞骨架网络。我们显示vln2突变植物表现出超敏的重力反应,PIN2(生长素外排载体)的更快回收和改变的生长素分布。在一起,我们的结果表明VLN2通过调节动力学,PIN2的循环利用和极性植物生长素的运输,在调节植物结构中起着重要作用。

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