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利用高通量拟南芥HTL/KAI2独脚金内酯感知系统检测寄生植物自杀萌发化合物

Detection of parasitic plant suicide germination compounds using a high-throughput Arabidopsis HTL/KAI2 strigolactone perception system.

作者信息

Toh Shigeo, Holbrook-Smith Duncan, Stokes Michael E, Tsuchiya Yuichiro, McCourt Peter

机构信息

Cell and Systems Biology, University of Toronto and the Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto ON M5S 3B2, Canada.

Cell and Systems Biology, University of Toronto and the Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto ON M5S 3B2, Canada.

出版信息

Chem Biol. 2014 Aug 14;21(8):988-98. doi: 10.1016/j.chembiol.2014.07.005. Epub 2014 Aug 7.

Abstract

Strigolactones are terpenoid-based plant hormones that act as communication signals within a plant, between plants and fungi, and between parasitic plants and their hosts. Here we show that an active enantiomer form of the strigolactone GR24, the germination stimulant karrikin, and a number of structurally related small molecules called cotylimides all bind the HTL/KAI2 α/β hydrolase in Arabidopsis. Strigolactones and cotylimides also promoted an interaction between HTL/KAI2 and the F-box protein MAX2 in yeast. Identification of this chemically dependent protein-protein interaction prompted the development of a yeast-based, high-throughput chemical screen for potential strigolactone mimics. Of the 40 lead compounds identified, three were found to have in planta strigolactone activity using Arabidopsis-based assays. More importantly, these three compounds were all found to stimulate suicide germination of the obligate parasitic plant Striga hermonthica. These results suggest that screening strategies involving yeast/Arabidopsis models may be useful in combating parasitic plant infestations.

摘要

独脚金内酯是一类基于萜类的植物激素,在植物体内、植物与真菌之间以及寄生植物与其宿主之间充当通讯信号。在此,我们表明独脚金内酯GR24的一种活性对映体形式、萌发刺激物卡里金以及一些结构相关的小分子(称为子叶酰亚胺)都能与拟南芥中的HTL/KAI2 α/β水解酶结合。独脚金内酯和子叶酰亚胺还能促进酵母中HTL/KAI2与F-box蛋白MAX2之间的相互作用。这种化学依赖性蛋白质-蛋白质相互作用的鉴定促使开发了一种基于酵母的高通量化学筛选方法,用于筛选潜在的独脚金内酯类似物。在鉴定出的40种先导化合物中,使用基于拟南芥的试验发现其中三种在植物体内具有独脚金内酯活性。更重要的是,发现这三种化合物都能刺激专性寄生植物独脚金的自杀萌发。这些结果表明涉及酵母/拟南芥模型的筛选策略可能有助于对抗寄生植物的侵扰。

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