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防御与生长的权衡:来自硫代葡萄糖苷及其分解代谢产物的见解。

Defense versus growth trade-offs: Insights from glucosinolates and their catabolites.

作者信息

Malhotra Bhanu, Kumar Pawan, Bisht Naveen C

机构信息

National Institute of Plant Genome Research, New Delhi, India.

出版信息

Plant Cell Environ. 2023 Oct;46(10):2964-2984. doi: 10.1111/pce.14462. Epub 2022 Oct 21.

Abstract

Specialized metabolites are a structurally diverse group of naturally occurring compounds that facilitate plant-environment interactions. Their synthesis and maintenance in plants is overall a resource-demanding process that occurs at the expense of growth and reproduction and typically incurs several costs. Evidence emerging on different specialized compounds suggests that they serve multiple auxiliary functions to influence and moderate primary metabolism in plants. These new functionalities enable them to mediate trade-offs from defenses to growth and also to offset their production and maintenance costs in plants. Recent research on glucosinolates (GSLs), which are specialized metabolites of Brassicales, demonstrates their emerging multifunctionalities to fine-tune plant growth and development under variable environments. Herein, we present findings from the septennium on individual GSLs and their catabolites (GHPs) per se, that work as mobile signals within plants to mediate precise regulations of their primary physiological functions. Both GSLs and GHPs calibrate growth-defense trade-off interactions either synergistically or directly when they function as storage compounds, abiotic stress alleviators, and one-to-one regulators of growth pathways in plants. We finally summarize the overall lessons learned from GSLs and GHPs as a model and raise the most pressing questions to address the molecular-genetic intricacies of specialized metabolite-based trade-offs in plants.

摘要

特殊代谢产物是一类结构多样的天然化合物,有助于植物与环境的相互作用。它们在植物中的合成和维持总体上是一个资源需求很高的过程,是以生长和繁殖为代价发生的,通常会产生多种成本。关于不同特殊化合物的新证据表明,它们具有多种辅助功能,可影响和调节植物的初级代谢。这些新功能使它们能够介导从防御到生长的权衡,并抵消它们在植物中的产生和维持成本。最近对十字花科植物的特殊代谢产物硫代葡萄糖苷(GSLs)的研究表明,它们在可变环境下对植物生长和发育进行微调的新多功能性。在此,我们展示了过去七年中关于单个GSL及其分解代谢产物(GHPs)本身的研究结果,它们作为植物体内的移动信号,介导其主要生理功能的精确调节。当GSLs和GHPs作为储存化合物、非生物胁迫缓解剂以及植物生长途径的一对一调节剂发挥作用时,它们协同或直接校准生长-防御权衡相互作用。我们最后总结了从GSLs和GHPs作为模型中学到的总体经验教训,并提出了最紧迫的问题,以解决基于特殊代谢产物的植物权衡的分子遗传学复杂性。

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