生物技术合成番茄红素的研究进展
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作者单位:

1.武汉软件工程职业学院(武汉开放大学),武汉 430205;2.中国热带农业科学院橡胶研究所/农业农村部橡胶树生物学与遗传资源利用重点实验室/海南省热带作物栽培生理学重点实验室,海口 571101

作者简介:

石彬,E-mail: 2015203060030@whu.edu.cn

中图分类号:

TS202.3;Q819

基金项目:

海南省自然科学基金高层次人才项目(320RC734); 武汉市知识创新项目曙光计划(2022022020801020440)


Research progress of lycopene synthesis by biotechnology
Author:
Affiliation:

1.Wuhan Vocational College of Software and Engineering,Wuhan 430205,China;2.Key Laboratory of Biology and Genetic Resources of Rubber Tree of Ministry of Agriculture and Rural Affairs/State Key Laboratory Incubation Base for Cultivation & Physiology of Tropical Crops/Rubber Research Institute,Chinese Academy of Tropical Agricultural Sciences,Haikou 571101,China

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    摘要:

    番茄红素作为一种高价值类胡萝卜素,具有抗氧化、清除人体自由基、预防心脑血管疾病等生理功能,被广泛应用于食品、药品等领域。目前番茄红素主要来源于天然番茄提取,产能不足导致其市场应用受限。而以合成生物学为代表的生物技术为番茄红素的工业生产带来了曙光。本文基于国内外相关文献资料总结了番茄红素的理化性质、生理功能和生产方法,重点分析了当前利用生物技术生产番茄红素的代谢工程改造策略、发酵和提取方法的最新研究进展,并对目前番茄红素的合成生物学研究现状进行系统梳理,最后对未来生物技术生产番茄红素的研究方向及存在问题提出展望,旨在为番茄红素的生物合成技术研究提供参考。

    Abstract:

    As a high-value carotenoid, lycopene has many physiological functions, such as anti-oxidation, scavenging free radicals and preventing heart cerebrovascular disease. It is widely used in fields such as food and medicine. At present, lycopene mainly comes from natural tomato extraction, and its market application is limited due to the limited production capacity. While the biotechnology represented by synthetic biology has brought the dawn for the innovative production of lycopene. In this paper, the physicochemical properties, physiological functions and production methods of lycopene were summarized according to the relevant domestic and foreign research literature. In particular this paper focuses on the recent research progress in the metabolic engineering, fermentation and extraction of lycopene by biotechnology. The research status of lycopene synthetic biology was systematically reviewed. Finally, the future direction and problems of lycopene production by biotechnology are prospected, so as to provide reference for the related research on the biosynthesis of lycopene.

    表 1 番茄红素菌株发酵过程和相应产量Table 1
    图1 番茄红素经由甲羟戊酸途径的生物合成路径Fig.1 The synthesis pathway of lycopene via MVA pathway
    图2 系统代谢工程改造酿酒酵母高产番茄红素Fig.2 The system metabolic engineering of Saccharomyces cerevisiae for efficient lycopene production
    图3 酿酒酵母高产番茄红素中试放大至6 000 L规模Fig.3 High lycopene production from Saccharomyces cerevisiae scaled up to 6 000 L
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石彬,邓小敏.生物技术合成番茄红素的研究进展[J].华中农业大学学报,2023,42(4):244-253

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  • 收稿日期:2023-03-13
  • 在线发布日期: 2023-08-30
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