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从微生物学角度看植物绿原酸的生物合成机制

Biosynthetic Mechanisms of Plant Chlorogenic Acid from a Microbiological Perspective.

作者信息

Zhong Jiasi, Ran Qingsong, Han Yanfeng, Gan Longzhan, Dong Chunbo

机构信息

Institute of Fungus Resources, Department of Ecology/Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), College of Life Sciences, Guizhou University, Guiyang 550025, China.

出版信息

Microorganisms. 2025 May 13;13(5):1114. doi: 10.3390/microorganisms13051114.

Abstract

Chlorogenic acid (CGA), a phenolic compound with diverse bioactivities, plays a crucial role in plant defense mechanisms and has significant therapeutic potential in human inflammatory and cardiovascular diseases. The biosynthesis and accumulation of CGA in plants result from a complex interplay between internal factors (e.g., hormones, enzymes, and genes) and external factors (e.g., microbial interactions, drought, and temperature fluctuations). This review systematically investigates the influence of microbes on internal regulatory factors governing CGA biosynthesis in plants. CGA is synthesized through four distinct metabolic pathways, with hormones, enzymes, and genes as key regulators. Notably, microbes enhance CGA biosynthesis by improving plant nutrient uptake, supplying essential hormones, regulating the expression of related enzymes and genes, and the interaction between bacteria and fungi. In addition, our review summarizes the challenges currently present in the research and proposes a series of innovative strategies. These include in-depth investigations into the molecular mechanisms of microbial regulation of plant gene expression, gene editing, development of microbial inoculants, construction of synthetic microbial communities, and exogenous application of plant hormones.

摘要

绿原酸(CGA)是一种具有多种生物活性的酚类化合物,在植物防御机制中起着关键作用,并且在人类炎症和心血管疾病方面具有显著的治疗潜力。植物中CGA的生物合成和积累是内部因素(如激素、酶和基因)与外部因素(如微生物相互作用、干旱和温度波动)之间复杂相互作用的结果。本综述系统地研究了微生物对植物中控制CGA生物合成的内部调节因子的影响。CGA通过四种不同的代谢途径合成,激素、酶和基因是关键调节因子。值得注意的是,微生物通过改善植物养分吸收、提供必需激素、调节相关酶和基因的表达以及细菌与真菌之间的相互作用来增强CGA的生物合成。此外,我们的综述总结了当前研究中存在的挑战,并提出了一系列创新策略。这些策略包括深入研究微生物调节植物基因表达的分子机制、基因编辑、微生物接种剂的开发、合成微生物群落的构建以及植物激素的外源应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a2b/12114604/e91269d8692b/microorganisms-13-01114-g001.jpg

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