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《指环王:独麦花内酯与其他小信号的传奇故事》。

Fellowship of the rings: a saga of strigolactones and other small signals.

机构信息

School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds, LS2 9JT, UK.

出版信息

New Phytol. 2020 Jan;225(2):621-636. doi: 10.1111/nph.16135. Epub 2019 Sep 17.

DOI:10.1111/nph.16135
PMID:31442309
Abstract

Strigolactones are an important class of plant signalling molecule with both external rhizospheric and internal hormonal functions in flowering plants. The past decade has seen staggering progress in strigolactone biology, permitting highly detailed understanding of their signalling, synthesis and biological roles - or so it seems. However, phylogenetic analyses show that strigolactone signalling mediated by the D14-SCF -SMXL7 complex is only one of a number of closely related signalling pathways, and is much less ubiquitous in land plants than might be expected. The existence of closely related pathways, such as the KAI2-SMAX1 module, challenges many of our assumptions about strigolactones, and in particular emphasises how little we understand about the specificity of strigolactone signalling with respect to related signalling pathways. In this review, we examine recent advances in strigolactone signalling, taking a holistic evolutionary view to identify the ambiguities and uncertainties in our understanding. We highlight that while we now have highly detailed molecular models for the core mechanism of D14-SMXL7 signalling, we still do not understand the ligand specificity of D14, the specificity of its interaction with SMXL7, nor the specificity of SMXL7 function. Our analysis therefore identifies key areas requiring further study.

摘要

独脚金内酯是一类重要的植物信号分子,在开花植物中具有外部根际和内部激素功能。在过去的十年中,独脚金内酯生物学取得了惊人的进展,使人们能够高度详细地了解其信号转导、合成和生物学作用——似乎是这样。然而,系统发育分析表明,由 D14-SCF-SMXL7 复合物介导的独脚金内酯信号转导只是许多密切相关的信号通路之一,在陆地植物中的普遍性远低于预期。密切相关的信号通路的存在,如 KAI2-SMAX1 模块,挑战了我们对独脚金内酯的许多假设,特别是强调了我们对独脚金内酯信号转导相对于相关信号通路的特异性的了解是多么有限。在这篇综述中,我们检查了独脚金内酯信号转导的最新进展,从整体进化的角度来确定我们理解中的模糊和不确定之处。我们强调,虽然我们现在有 D14-SMXL7 信号转导核心机制的高度详细的分子模型,但我们仍然不了解 D14 的配体特异性、它与 SMXL7 的相互作用特异性,也不了解 SMXL7 功能的特异性。因此,我们的分析确定了需要进一步研究的关键领域。

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