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冷应激通过植物激素、转录过程、功能酶和表观遗传学来调节植物中类黄酮和萜类化合物的积累。

Cold stress regulates accumulation of flavonoids and terpenoids in plants by phytohormone, transcription process, functional enzyme, and epigenetics.

机构信息

Wenzhou Safety (Emergency) Institute of Tianjin University, Wenzhou, China.

School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, China.

出版信息

Crit Rev Biotechnol. 2023 Dec;43(5):680-697. doi: 10.1080/07388551.2022.2053056. Epub 2022 Jul 18.

Abstract

Plants make different defense mechanisms in response to different environmental stresses. One common way is to produce secondary metabolites. Temperature is the main environmental factor that regulates plant secondary metabolites, especially flavonoids and terpenoids. Stress caused by temperature decreasing to 4-10 °C is conducive to the accumulation of flavonoids and terpenoids. However, the accumulation mechanism under cold stress still lacks a systematic explanation. In this review, we summarize three aspects of cold stress promoting the accumulation of flavonoids and terpenoids in plants, that is, by affecting (1) the content of endogenous plant hormones, especially jasmonic acid and abscisic acid; (2) the expression level and activity of important transcription factors, such as bHLH and MYB families. This aspect also includes post-translational modification of transcription factors caused by cold stress; (3) key enzyme genes expression and activity in the biosynthesis pathway, in addition, the rate-limiting enzyme and glycosyltransferases genes are responsive to cold stress. The systematic understanding of cold stress regulates flavonoids, and terpenoids will contribute to the future research of genetic engineering breeding, metabolism regulation, glycosyltransferases mining, and plant synthetic biology.

摘要

植物会针对不同的环境压力产生不同的防御机制。其中一种常见的方式是产生次生代谢物。温度是调节植物次生代谢物的主要环境因素,尤其是类黄酮和萜类化合物。温度降低到 4-10°C 会导致类黄酮和萜类化合物的积累,这是一种胁迫。然而,低温胁迫下的积累机制仍缺乏系统的解释。在这篇综述中,我们总结了低温胁迫促进植物中类黄酮和萜类化合物积累的三个方面,即通过影响(1)内源性植物激素,尤其是茉莉酸和脱落酸的含量;(2)重要转录因子的表达水平和活性,如 bHLH 和 MYB 家族。这方面还包括低温胁迫引起的转录因子的翻译后修饰;(3)生物合成途径中关键酶基因的表达和活性,此外,限速酶和糖基转移酶基因对低温胁迫有响应。系统地了解低温胁迫对类黄酮和萜类化合物的调控将有助于未来进行遗传工程育种、代谢调控、糖基转移酶挖掘和植物合成生物学的研究。

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