文章摘要
邵秀红 1,张海霞 2,马柱文 1,陈俊标 1,潘晓英 1,李集勤 1,黄振瑞 1.茄科作物绿原酸的生物合成及调控机制研究进展[J].广东农业科学,2023,50(7):102-114
查看全文    HTML 茄科作物绿原酸的生物合成及调控机制研究进展
Research Progress on Biosynthesis and Regulatory Mechanisms of Chlorogenic Acid in Solanaceae Crops
  
DOI:10.16768/j.issn.1004-874X.2023.07.011
中文关键词: 茄科作物  绿原酸  含量  生物合成途径  调控机制
英文关键词: Solanaceae crops  chlorogenic acid  content  biosynthetic pathways  regulatory mechanisms
基金项目:广东省自然科学基金项目(2020A1515011391);广东省农业科学院科技人才引进项目(粤农科人〔2019〕25 号);广东省农业科学院作物研究所所长基金 / 广东省农作物遗传改良重点实验室开放基金项目(202002)
作者单位
邵秀红 1,张海霞 2,马柱文 1,陈俊标 1,潘晓英 1,李集勤 1,黄振瑞 1 1. 广东省农业科学院作物研究所 / 广东省农作物遗传改良重点实验室 / 广东省烟草育种与综合利用工程技术研究中心广东 广州 5106402. 广东烟草韶关市有限公司乳源瑶族自治县分公司广东 韶关 512700 
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中文摘要:
      绿原酸是植物体内重要的多酚类化合物,在植物生长发育、抗病虫害、抗寒及其他逆境等方面发挥重要作用,同时具有多种药理功能,包括抗炎、抗菌、抗病毒、抗癌、抗紫外光与辐射、免疫调节、降血脂、降血糖等,在功能性食品、营养补充剂、食品原料、化工和新药开发等方面的应用潜力巨大。番茄、茄子、辣椒、马铃薯和烟草都是世界上重要的经济作物,它们均是茄科植物的重要种类,也是绿原酸的重要来源,其果实或营养器官中的绿原酸含量具有较大差异,且绿原酸合成代谢是遗传和环境等因素共同决定的复杂生物学过程。因此,茄科作物绿原酸的生物合成及其调控的分子机制研究对作物遗传改良具有重要的理论意义与应用价值。本文概述了绿原酸在以上 5 种茄科作物中的含量情况、绿原酸的生物合成途径及其转录调控分子机制,以及基因型差异、环境因素、栽培措施等因素对茄科作物绿原酸含量影响等方面的研究进展,旨在为茄科作物绿原酸开发利用、高绿原酸茄科作物种质资源创制以及新品种培育等提供理论依据。
英文摘要:
      Chlorogenic acid is an important polyphenolic compound in plants, which plays an important physiological role in plant growth and development, disease and pest resistance, cold resistance and other stresses. It has a variety of pharmacological functions, including anti-inflammatory, antibacterial, antiviral, anticancer, anti-ultraviolet light and radiation, immunoregulation, hypolipidemic, hypoglycemic, etc. Chlorogenic acid has great potential especially in functional foods, nutritional supplements, raw food materials, chemical industry and drug development. Tomato, eggplant, pepper, potato and tobacco are important cash crops in the world. They are all important types of Solanaceae plants, and also important sources of chlorogenic acid. The content of chlorogenic acid in fruits or vegetative organs of Solanaceae crops varies greatly, and their chlorogenic acid anabolism is a complex biological process determined by genetic and environmental factors. Therefore, the research on biosynthesis and molecular mechanisms of regulation of chlorogenic acid in Solanaceae crops has important theoretical significance and application value for crop genetic improvement. The article outlines the content of chlorogenic acid in the above five Solanaceae crops, the biosynthetic pathways and transcriptional regulation molecular mechanisms of chlorogenic acid, and the effects of genotype differences, environmental factors, cultivation measures on chlorogenic acid content in Solanaceae crops, which is expected to provide theoretical bases for the development and utilization of chlorogenic acid in Solanaceae crops, the creation of germplasm resources with high chlorogenic acid and the breeding of new varieties of Solanaceae crops.
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