Guercio Angelica M, Palayam Malathy, Shabek Nitzan
Department of Plant Biology, College of Biological Sciences, University of California - Davis, Davis, CA 95616, USA.
Phytochem Rev. 2023 Apr;22(2):339-360. doi: 10.1007/s11101-023-09853-4. Epub 2023 Jan 23.
Strigolactones (SLs) are a unique and novel class of phytohormones that regulate numerous processes of growth and development in plants. Besides their endogenous functions as hormones, SLs are exuded by plant roots to stimulate critical interactions with symbiotic fungi but can also be exploited by parasitic plants to trigger their seed germination. In the past decade, since their discovery as phytohormones, rapid progress has been made in understanding the SL biosynthesis and signaling pathway. Of particular interest are the diversification of natural SLs and their exact mode of perception, selectivity, and hydrolysis by their dedicated receptors in plants. Here we provide an overview of the emerging field of SL perception with a focus on the diversity of canonical, non-canonical, and synthetic SL probes. Moreover, this review offers useful structural insights into SL perception, the precise molecular adaptations that define receptor-ligand specificities, and the mechanisms of SL hydrolysis and its attenuation by downstream signaling components.
独脚金内酯(SLs)是一类独特且新颖的植物激素,可调节植物生长发育的众多过程。除了作为激素的内源性功能外,SLs还由植物根系分泌,以刺激与共生真菌的关键相互作用,但也会被寄生植物利用来触发其种子萌发。在过去十年中,自它们被发现为植物激素以来,在理解SL生物合成和信号通路方面取得了迅速进展。特别令人感兴趣的是天然SLs的多样化及其在植物中由专用受体进行感知、选择性和水解的确切模式。在此,我们概述了SL感知这一新兴领域,重点关注经典、非经典和合成SL探针的多样性。此外,本综述提供了有关SL感知的有用结构见解、定义受体 - 配体特异性的精确分子适应性,以及SL水解机制及其被下游信号成分减弱的机制。