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AtABCG25的过表达增强了保卫细胞中的脱落酸信号,并提高了植物水分利用效率。

Overexpression of AtABCG25 enhances the abscisic acid signal in guard cells and improves plant water use efficiency.

作者信息

Kuromori Takashi, Fujita Miki, Urano Kaoru, Tanabata Takanari, Sugimoto Eriko, Shinozaki Kazuo

机构信息

Gene Discovery Research Group, RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.

Gene Discovery Research Group, RIKEN Center for Sustainable Resource Science, Tsukuba, Ibaraki 305-0074, Japan.

出版信息

Plant Sci. 2016 Oct;251:75-81. doi: 10.1016/j.plantsci.2016.02.019. Epub 2016 Mar 3.

Abstract

In addition to improving drought tolerance, improvement of water use efficiency is a major challenge in plant physiology. Due to their trade-off relationships, it is generally considered that achieving stress tolerance is incompatible with maintaining stable growth. Abscisic acid (ABA) is a key phytohormone that regulates the balance between intrinsic growth and environmental responses. Previously, we identified AtABCG25 as a cell-membrane ABA transporter that export ABA from the inside to the outside of cells. AtABCG25-overexpressing plants showed a lower transpiration phenotype without any growth retardation. Here, we dissected this useful trait using precise phenotyping approaches. AtABCG25 overexpression stimulated a local ABA response in guard cells. Furthermore, AtABCG25 overexpression enhanced drought tolerance, probably resulting from maintenance of water contents over the common threshold for survival after drought stress treatment. Finally, we observed enhanced water use efficiency by overexpression of AtABCG25, in addition to drought tolerance. These results were consistent with the function of AtABCG25 as an ABA efflux transporter. This unique trait may be generally useful for improving the water use efficiency and drought tolerance of plants.

摘要

除了提高耐旱性外,提高水分利用效率是植物生理学中的一项重大挑战。由于它们之间的权衡关系,人们普遍认为实现胁迫耐受性与维持稳定生长是不相容的。脱落酸(ABA)是一种关键的植物激素,可调节内在生长与环境响应之间的平衡。此前,我们鉴定出AtABCG25是一种细胞膜ABA转运蛋白,可将ABA从细胞内转运到细胞外。过表达AtABCG25的植物表现出较低的蒸腾表型,且没有任何生长迟缓。在这里,我们使用精确的表型分析方法剖析了这一有用性状。AtABCG25过表达刺激了保卫细胞中的局部ABA反应。此外,AtABCG25过表达增强了耐旱性,这可能是由于在干旱胁迫处理后将水分含量维持在生存的共同阈值以上所致。最后,我们观察到过表达AtABCG25除了增强耐旱性外,还提高了水分利用效率。这些结果与AtABCG25作为ABA外排转运蛋白的功能一致。这一独特性状可能普遍有助于提高植物的水分利用效率和耐旱性。

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