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利用工程化脱落酸受体对植物水分利用进行农艺控制。

Agrochemical control of plant water use using engineered abscisic acid receptors.

机构信息

1] Center for Plant Cell Biology and Department of Botany and Plant Sciences, University of California, Riverside, California 92521, USA [2] Institute for Integrative Genome Biology, Riverside, California 92521, USA.

Department of Biochemistry, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Nature. 2015 Apr 23;520(7548):545-8. doi: 10.1038/nature14123. Epub 2015 Feb 4.

Abstract

Rising temperatures and lessening fresh water supplies are threatening agricultural productivity and have motivated efforts to improve plant water use and drought tolerance. During water deficit, plants produce elevated levels of abscisic acid (ABA), which improves water consumption and stress tolerance by controlling guard cell aperture and other protective responses. One attractive strategy for controlling water use is to develop compounds that activate ABA receptors, but agonists approved for use have yet to be developed. In principle, an engineered ABA receptor that can be activated by an existing agrochemical could achieve this goal. Here we describe a variant of the ABA receptor PYRABACTIN RESISTANCE 1 (PYR1) that possesses nanomolar sensitivity to the agrochemical mandipropamid and demonstrate its efficacy for controlling ABA responses and drought tolerance in transgenic plants. Furthermore, crystallographic studies provide a mechanistic basis for its activity and demonstrate the relative ease with which the PYR1 ligand-binding pocket can be altered to accommodate new ligands. Thus, we have successfully repurposed an agrochemical for a new application using receptor engineering. We anticipate that this strategy will be applied to other plant receptors and represents a new avenue for crop improvement.

摘要

气温上升和淡水资源减少正在威胁农业生产力,这促使人们努力提高植物的水分利用效率和抗旱能力。在水分亏缺时,植物会产生大量的脱落酸(ABA),通过控制保卫细胞的孔径和其他保护反应来提高水分利用效率和抗逆性。控制水分利用的一种有吸引力的策略是开发激活 ABA 受体的化合物,但尚未开发出批准使用的激动剂。原则上,可以通过现有的农用化学品激活工程化的 ABA 受体来实现这一目标。在这里,我们描述了一种对农用化学品 mandipropamid 具有纳摩尔敏感性的 ABA 受体 PYRABACTIN RESISTANCE 1(PYR1)的变体,并证明其在转基因植物中控制 ABA 反应和抗旱能力的功效。此外,晶体学研究为其活性提供了一个机制基础,并表明 PYR1 配体结合口袋相对容易改变以适应新的配体。因此,我们成功地利用受体工程将一种农用化学品重新用于新的应用。我们预计,这一策略将应用于其他植物受体,并为作物改良开辟新途径。

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