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拟南芥幼苗根系向水生长的分子机制(十字花科)。

Molecular mechanisms of hydrotropism in seedling roots of Arabidopsis thaliana (Brassicaceae).

机构信息

Graduate School of Life Sciences, Tohoku University, 2-1-1 Katahira, Aoba-ku, Sendai 980-8577, Japan.

出版信息

Am J Bot. 2013 Jan;100(1):25-34. doi: 10.3732/ajb.1200419. Epub 2012 Dec 21.

Abstract

Roots show positive hydrotropism in response to moisture gradients, which is believed to contribute to plant water acquisition. This article reviews the recent advances of the physiological and molecular genetic studies on hydrotropism in seedling roots of Arabidopsis thaliana. We identified MIZU-KUSSEI1 (MIZ1) and MIZ2, essential genes for hydrotropism in roots; the former encodes a protein of unknown function, and the latter encodes an ARF-GEF (GNOM) protein involved in vesicle trafficking. Because both mutants are defective in hydrotropism but not in gravitropism, these mutations might affect a molecular mechanism unique to hydrotropism. MIZ1 is expressed in the lateral root cap and cortex of the root proper. It is localized as a soluble protein in the cytoplasm and in association with the cytoplasmic face of endoplasmic reticulum (ER) membranes in root cells. Light and ABA independently regulate MIZ1 expression, which influences the ultimate hydrotropic response. In addition, MIZ1 overexpression results in an enhancement of hydrotropism and an inhibition of lateral root formation. This phenotype is likely related to the alteration of auxin content in roots. Specifically, the auxin level in the roots decreases in the MIZ1 overexpressor and increases in the miz1 mutant. Unlike most gnom mutants, miz2 displays normal morphology, growth, and gravitropism, with normal localization of PIN proteins. It is probable that MIZ1 plays a crucial role in hydrotropic response by regulating the endogenous level of auxin in Arabidopsis roots. Furthermore, the role of GNOM/MIZ2 in hydrotropism is distinct from that of gravitropism.

摘要

根在水分梯度下表现出正向的向水性,这被认为有助于植物获取水分。本文综述了近年来拟南芥幼苗根向水性的生理和分子遗传研究进展。我们鉴定了 MIZU-KUSSEI1(MIZ1)和 MIZ2 是根向水性所必需的基因;前者编码一个未知功能的蛋白质,后者编码一个参与囊泡运输的 ARF-GEF(GNOM)蛋白。由于这两个突变体在向水性方面有缺陷但在向重力性方面没有缺陷,这些突变可能影响了向水性所特有的分子机制。MIZ1 在侧根冠和根的皮层中表达。它在细胞质中作为可溶性蛋白定位,并与根细胞内质网膜的细胞质面结合。光照和 ABA 独立调节 MIZ1 的表达,这影响最终的向水性反应。此外,MIZ1 的过表达导致向水性增强和侧根形成抑制。这种表型可能与根中生长素含量的改变有关。具体来说,MIZ1 过表达植株根中的生长素水平降低,miz1 突变体中的生长素水平升高。与大多数 gnom 突变体不同,miz2 表现出正常的形态、生长和向重力性,PIN 蛋白的定位正常。MIZ1 可能通过调节拟南芥根中生长素的内源性水平来发挥在向水性反应中的关键作用。此外,GNOM/MIZ2 在向水性中的作用与向重力性不同。

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