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一种RhoGDP解离抑制剂在空间上调控根毛细胞的生长。

A RhoGDP dissociation inhibitor spatially regulates growth in root hair cells.

作者信息

Carol Rachel J, Takeda Seiji, Linstead Paul, Durrant Marcus C, Kakesova Hana, Derbyshire Paul, Drea Sinéad, Zarsky Viktor, Dolan Liam

机构信息

Department of Cell and Developmental Biology, John Innes Centre, Norwich NR4 7UH, UK.

出版信息

Nature. 2005 Dec 15;438(7070):1013-6. doi: 10.1038/nature04198.

Abstract

Root hairs are cellular protuberances extending from the root surface into the soil; there they provide access to immobile inorganic ions such as phosphate, which are essential for growth. Their cylindrical shape results from a polarized mechanism of cell expansion called tip growth in which elongation is restricted to a small area at the surface of the hair-forming cell (trichoblast) tip. Here we identify proteins that spatially control the sites at which cell growth occurs by isolating Arabidopsis mutants (scn1) that develop ectopic sites of growth on trichoblasts. We cloned SCN1 and showed that SCN1 is a RhoGTPase GDP dissociation inhibitor (RhoGDI) that spatially restricts the sites of growth to a single point on the trichoblast. We showed previously that localized production of reactive oxygen species by RHD2/AtrbohC NADPH oxidase is required for hair growth; here we show that SCN1/AtrhoGDI1 is a component of the mechanism that focuses RHD2/AtrbohC-catalysed production of reactive oxygen species to hair tips during wild-type development. We propose that the spatial organization of growth in plant cells requires the local RhoGDI-regulated activation of the RHD2/AtrbohC NADPH oxidase.

摘要

根毛是从根表面延伸到土壤中的细胞突起;在那里,根毛为获取如磷酸盐等不可移动的无机离子提供了途径,而这些离子对生长至关重要。它们的圆柱形形状源于一种称为顶端生长的细胞扩张极化机制,在这种机制中,伸长仅限于形成根毛的细胞(根毛细胞)顶端表面的一个小区域。在这里,我们通过分离在根毛细胞上形成异位生长位点的拟南芥突变体(scn1),鉴定出在空间上控制细胞生长发生位点的蛋白质。我们克隆了SCN1,并表明SCN1是一种RhoGTPase GDP解离抑制剂(RhoGDI),它在空间上将生长位点限制在根毛细胞上的单个点。我们之前表明,RHD2/AtrbohC NADPH氧化酶局部产生活性氧是根毛生长所必需的;在这里,我们表明SCN1/AtrhoGDI1是在野生型发育过程中将RHD2/AtrbohC催化的活性氧产聚焦于根毛尖端的机制的一个组成部分。我们提出,植物细胞生长的空间组织需要RhoGDI局部调节的RHD2/AtrbohC NADPH氧化酶的激活。

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