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维管束植物中独脚金内酯的感知。

The perception of strigolactones in vascular plants.

机构信息

Department of Cell and Systems Biology and Centre for the Analysis of Genome Evolution and Function, University of Toronto, Toronto, Ontario, Canada.

出版信息

Nat Chem Biol. 2017 May 17;13(6):599-606. doi: 10.1038/nchembio.2340.

Abstract

Small-molecule hormones play central roles in plant development, ranging from cellular differentiation and organ formation to developmental response instruction in changing environments. A recently discovered collection of related small molecules collectively called strigolactones are of particular interest, as these hormones also function as ecological communicators between plants and fungi and between parasitic plants and their hosts. Advances from model plant systems have begun to unravel how, as a hormone, strigolactone is perceived and transduced. In this Review, we summarize this information and examine how understanding strigolactone hormone signaling is leading to insights into parasitic plant infections. We specifically focus on how the development of chemical probes can be used in combination with model plant systems to dissect strigolactone's perception in the parasitic plant Striga hermonthica. This information is particularly relevant since Striga is considered one of the largest impediments to food security in sub-Saharan Africa.

摘要

小分子激素在植物发育中起着核心作用,从细胞分化和器官形成到环境变化时的发育反应指令。最近发现的一类相关的小分子统称独脚金内酯,这些激素作为植物和真菌之间以及寄生植物与其宿主之间的生态通讯者,特别令人关注。来自模式植物系统的进展已经开始揭示作为激素的独脚金内酯是如何被感知和转导的。在这篇综述中,我们总结了这些信息,并研究了对独脚金内酯激素信号的理解如何导致对寄生植物感染的深入了解。我们特别关注化学探针的发展如何与模式植物系统相结合,以剖析寄生植物独脚金内酯的感知。由于独脚金被认为是撒哈拉以南非洲粮食安全的最大障碍之一,因此这些信息特别重要。

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