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萜类化合物生物合成的研究进展及其在植物抗性中的生态功能。

Advances in the Biosynthesis of Terpenoids and Their Ecological Functions in Plant Resistance.

机构信息

Food Crops Institute, Hubei Academy of Agricultural Sciences, Hubei Key Laboratory of Food Crop Germplasm and Genetic Improvement, Laboratory of Crop Molecular Breeding, Ministry of Agriculture and Rural Affairs, Wuhan 430064, China.

College of Life Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Int J Mol Sci. 2023 Jul 17;24(14):11561. doi: 10.3390/ijms241411561.

Abstract

Secondary metabolism plays an important role in the adaptation of plants to their environments, particularly by mediating bio-interactions and protecting plants from herbivores, insects, and pathogens. Terpenoids form the largest group of plant secondary metabolites, and their biosynthesis and regulation are extremely complicated. Terpenoids are key players in the interactions and defense reactions between plants, microorganisms, and animals. Terpene compounds are of great significance both to plants themselves and the ecological environment. On the one hand, while protecting plants themselves, they can also have an impact on the environment, thereby affecting the evolution of plant communities and even ecosystems. On the other hand, their economic value is gradually becoming clear in various aspects of human life; their potential is enormous, and they have broad application prospects. Therefore, research on terpenoids is crucial for plants, especially crops. This review paper is mainly focused on the following six aspects: plant terpenes (especially terpene volatiles and plant defense); their ecological functions; their biosynthesis and transport; related synthesis genes and their regulation; terpene homologues; and research and application prospects. We will provide readers with a systematic introduction to terpenoids covering the above aspects.

摘要

次生代谢在植物适应环境中起着重要作用,特别是通过介导生物相互作用和保护植物免受草食动物、昆虫和病原体的侵害。萜类化合物是植物次生代谢物中最大的一组,其生物合成和调节极其复杂。萜类化合物是植物、微生物和动物之间相互作用和防御反应的关键参与者。萜类化合物对植物本身和生态环境都具有重要意义。一方面,在保护植物自身的同时,它们也会对环境产生影响,从而影响植物群落甚至生态系统的进化。另一方面,萜类化合物在人类生活的各个方面的经济价值逐渐显现,其潜力巨大,具有广阔的应用前景。因此,萜类化合物的研究对植物,特别是作物至关重要。本文主要集中在以下六个方面:植物萜类化合物(特别是萜类挥发物和植物防御);它们的生态功能;它们的生物合成和运输;相关合成基因及其调控;萜类同源物;以及研究和应用前景。我们将为读者提供一个系统的萜类化合物概述,涵盖上述各个方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db33/10380271/c3fe91bf0a27/ijms-24-11561-g001.jpg

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