首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Rice actin-binding protein RMD is a key link in the auxin–actin regulatory loop that controls cell growth
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Rice actin-binding protein RMD is a key link in the auxin–actin regulatory loop that controls cell growth

机译:水稻肌动蛋白结合蛋白RMD是生长素-肌动蛋白调节回路中控制细胞生长的关键环节

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摘要

The plant hormone auxin plays a central role in plant growth and development. Auxin transport and signaling depend on actin organization. Despite its functional importance, the mechanistic link between actin filaments (F-actin) and auxin intracellular signaling remains unclear. Here, we report that the actin-organizing protein Rice Morphology Determinant (RMD), a type II formin from rice (Oryza sativa), provides a key link. Mutants lacking RMD display abnormal cell growth and altered configuration of F-actin array direction. The rmd mutants also exhibit an inhibition of auxin-mediated cell elongation, decreased polar auxin transport, altered auxin distribution gradients in root tips, and suppression of plasma membrane localization of auxin transporters O. sativa PIN-FORMED 1b (OsPIN1b) and OsPIN2 in root cells. We demonstrate that RMD is required for endocytosis, exocytosis, and auxin-mediated OsPIN2 recycling to the plasma membrane. Moreover, RMD expression is directly regulated by heterodimerized O. sativa auxin response factor 23 (OsARF23) and OsARF24, providing evidence that auxin modulates the orientation of F-actin arrays through RMD. In support of this regulatory loop, osarf23 and lines with reduced expression of both OsARF23 and OsARF24 display reduced RMD expression, disrupted F-actin organization and cell growth, less sensitivity to auxin response, and altered auxin distribution and OsPIN localization. Our findings establish RMD as a crucial component of the auxin–actin self-organizing regulatory loop from the nucleus to cytoplasm that controls rice cell growth and morphogenesis.
机译:植物激素生长素在植物生长发育中起着核心作用。生长素的运输和信号传导取决于肌动蛋白的组织。尽管它的功能重要性,肌动蛋白丝(F-肌动蛋白)和生长素细胞内信号之间的机制联系仍不清楚。在这里,我们报告肌动蛋白组织蛋白大米形态决定因素(RMD),一种来自大米(Oryza sativa)的II型formin,提供了关键的联系。缺少RMD的突变体显示异常细胞生长和F-肌动蛋白阵列方向的配置改变。 rmd突变体还显示出对生长素介导的细胞伸长的抑制作用,极性生长素的转运减少,根尖中生长素分布梯度的改变以及生长素转运蛋白O. sativa PIN-FORMED 1b(OsPIN1b)和OsPIN2的质膜定位受到抑制细胞。我们证明,RMD是胞吞作用,胞吐作用和生长素介导的OsPIN2回收到质膜所必需的。此外,RMD的表达受异二聚化水稻生长素反应因子23(OsARF23)和OsARF24的直接调节,提供了生长素通过RMD调节F-肌动蛋白阵列方向的证据。为了支持该调节环,osarf23和具有降低的OsARF23和OsARF24表达的品系显示RMD表达降低,F-肌动蛋白组织和细胞生长中断,对植物生长素应答的敏感性降低,并改变了植物生长素的分布和OsPIN定位。我们的发现将RMD确立为生长素-肌动蛋白自组织调节环(从细胞核到细胞质,控制水稻细胞生长和形态发生)的重要组成部分。

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