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植物重力感应反应中的机械转导分子:淀粉体/平衡石膜含有一种类β1整合素蛋白。

Mechanotransduction molecules in the plant gravisensory response: amyloplast/statolith membranes contain a beta 1 integrin-like protein.

作者信息

Lynch T M, Lintilhac P M, Domozych D

机构信息

Botany Department, University of Vermont, Burlington, USA.

出版信息

Protoplasma. 1998;201(1-2):92-100. doi: 10.1007/BF01280715.

Abstract

It has been hypothesized that the sedimentation of amyloplasts within root cap cells is the primary event in the plant gravisensory-signal transduction cascade. Statolith sedimentation, with its ability to generate weighty mechanical signals, is a legitimate means for organisms to discriminate the direction of the gravity vector. However, it has been demonstrated that starchless mutants with reduced statolith densities maintain some ability to sense gravity, calling into question the statolith sedimentation hypothesis. Here we report on the presence of a beta 1 integrin-like protein localized inside amyloplasts of tobacco NT-1 suspension culture, callus cells, and whole-root caps. Two different antibodies to the beta 1 integrin, one to the cytoplasmic domain and one to the extracellular domain, localize in the vicinity of the starch grains within amyloplasts of NT-1. Biochemical data reveals a 110-kDa protein immunoprecipitated from membrane fractions of NT-1 suspension culture indicating size homology to known beta 1 integrin in animals. This study provides the first direct evidence for the possibility of integrin-mediated signal transduction in the perception of gravity by higher plants. An integrin-mediated pathway, initiated by starch grain sedimentation within the amyloplast, may provide the signal amplification necessary to explain the gravitropic response in starch-depleted cultivars.

摘要

据推测,根冠细胞中淀粉体的沉降是植物重力感应信号转导级联反应中的首要事件。平衡石沉降能够产生有力的机械信号,是生物体辨别重力矢量方向的一种合理方式。然而,已有研究表明,平衡石密度降低的无淀粉突变体仍保留一定的重力感应能力,这使平衡石沉降假说受到质疑。在此,我们报告在烟草NT-1悬浮培养物、愈伤组织细胞和整个根冠的淀粉体内存在一种类β1整合素蛋白。针对β1整合素的两种不同抗体,一种针对细胞质结构域,另一种针对细胞外结构域,均定位于NT-1淀粉体中淀粉粒附近。生化数据显示,从NT-1悬浮培养物的膜组分中免疫沉淀出一种110 kDa的蛋白质,表明其大小与动物中已知的β1整合素同源。本研究首次直接证明了高等植物在重力感知中整合素介导信号转导的可能性。由淀粉体中淀粉粒沉降引发的整合素介导途径,可能提供解释淀粉缺乏品种向重力性反应所需的信号放大。

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