茉莉酸
生物
调节器
植物生长
计算生物学
植物进化
转录调控
基因表达调控
适应(眼睛)
代谢物
基因
拟南芥
生物化学
基因表达
植物
神经科学
基因组
突变体
作者
Debora Gasperini,Gregg A. Howe
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2024-01-30
卷期号:195 (1): 135-154
被引量:54
标识
DOI:10.1093/plphys/kiae045
摘要
Small-molecule phytohormones exert control over plant growth, development, and stress responses by coordinating the patterns of gene expression within and between cells. Increasing evidence indicates that currently recognized plant hormones are part of a larger group of regulatory metabolites that have acquired signaling properties during the evolution of land plants. This rich assortment of chemical signals reflects the tremendous diversity of plant secondary metabolism, which offers evolutionary solutions to the daunting challenges of sessility and other unique aspects of plant biology. A major gap in our current understanding of plant regulatory metabolites is the lack of insight into the direct targets of these compounds. Here, we illustrate the blurred distinction between classical phytohormones and other bioactive metabolites by highlighting the major scientific advances that transformed the view of jasmonate from an interesting floral scent to a potent transcriptional regulator. Lessons from jasmonate research generally apply to other phytohormones and thus may help provide a broad understanding of regulatory metabolite-protein interactions. In providing a framework that links small-molecule diversity to transcriptional plasticity, we hope to stimulate future research to explore the evolution, functions, and mechanisms of perception of a broad range of plant regulatory metabolites.
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