生物学杂志 ›› 2026, Vol. 43 ›› Issue (3): 80-.doi: 10.3969/j.issn.2095-1736.2026.03.080

• 综述与专论 • 上一篇    下一篇

微生物发酵生产紫色杆菌素的研究进展

张啟宁1, 崔心江2, 焦峪娟2, 章文明1, 姜万奎1, 蒋羽佳1, 郭 峰1, 信丰学1,2
  

  1. 1. 南京工业大学 生物与制药工程学院 材料化学工程全国重点实验室, 南京 211816;
    2. 山东亚华生物科技有限公司, 潍坊 261000
  • 出版日期:2026-06-18 发布日期:2026-06-16
  • 通讯作者: 信丰学,博士,教授,研究方向为木质纤维素等废弃碳资源的生物降解与大宗化学品、生物燃料的合成;精细化学品合成和CBP人工混菌体系的设计、构建与功能调控;GRAS级安全酵母菌的开发和细胞工厂构建,尤其针对功能脂肪酸、胡萝卜素、虾青素等医药营养品,E-mail:xinfengxue@njtech.edu.cn
  • 作者简介:张啟宁,硕士研究生,研究方向为生物制造,E-mail:zhangqining@njtech.edu.cn
  • 基金资助:
    山东省泰山产业领军人才工程项目(202306155); 江苏省农业科技自主创新资金项目\[CX(24)3085\]

Research progress in the production of violacein by microbial fermentation

ZHANG Qining1, CUI Xinjiang2, JIAO Yujuan2, ZHANG Wenming1,JIANG Wankui1, JIANG Yujia1, GUO Feng1, XIN Fengxue1,2#br#   

  1. 1. National Key Laboratory of Materials Chemical Engineering, School of Biological and Pharmaceutical Engineering,
    Nanjing Tech University, Nanjing 211816, China; 2. Shandong Yahua Biotechnology Co., Ltd., Weifang 261000, China
  • Online:2026-06-18 Published:2026-06-16

摘要: 本综述系统介绍了紫色杆菌素这一天然来源的紫色色素的化学特性及其广泛的生物活性,简述了其在医药、农业以及食品工业中的潜在应用价值。回顾了紫色杆菌素从天然来源提取得到的研究历史,并分析了其在大规模生产中因产量有限、合成机制复杂等问题而面临的发展瓶颈。近年来,合成生物学和代谢工程的快速发展为紫色杆菌素的高效生物合成提供了新思路。文章重点回顾了紫色杆菌素生物合成基因簇的结构与调控机制,阐述了在大肠杆菌、解脂耶氏酵母及其他模式菌株中构建异源表达系统所取得的技术进展。此外,本文总结了以农业副产物和工业废弃物为发酵原料,用来降低生产成本和提高环境友好性的研究趋势,探讨了通过优化发酵工艺参数等非代谢工程策略以提高紫色杆菌素生产的效率。由于当前紫色杆菌素的工业化进程仍受到发酵周期长和合成路径效率低等多重因素的制约。基于已有研究成果,本文得出紫色杆菌素高效可持续生产的关键在于打通基因调控网络、增强细胞工厂的资源利用效率。为此,提出了优化基因表达、改进发酵方案和利用低成本原材料以促进紫色杆菌素高效可持续生产的策略。

关键词: violacein;vioABCDE, strain modification, biosynthesis

Abstract: This review systematically introduces the chemical properties and extensive biological activities of violacein, a purple pigment from natural sources, and briefly describes its potential application value in medicine, agriculture, and the food industry. The research history of violacein extracted from natural sources is reviewed, and the development bottlenecks in large-scale production due to limited yield and a complex synthesis mechanism are analyzed. In recent years, the rapid development of synthetic biology and metabolic engineering has provided new ideas for the efficient biosynthesis of violacein. This article focuses on reviewing the structure and regulatory mechanism of the violacein biosynthetic gene cluster, and expounds on the technical progress made in constructing heterologous expression systems inEscherichia coli,Yarrowia lipolytica, and other model strains. In addition, this article summarizes the research trend of using agricultural by-products and industrial waste as fermentation raw materials to reduce production costs and improve environmental friendliness, and explores non-metabolic engineering strategies such as optimizing fermentation process parameters to improve the efficiency of violacein production. The current industrialization process of violacein is still restricted by multiple factors such as a long fermentation cycle and low efficiency of the synthesis pathway. Based on the existing research results, this article concludes that the key to efficient and sustainable production of violacein lies in unraveling the gene regulatory network and enhancing the resource utilization efficiency of cell factories. To this end, strategies for optimizing gene expression, improving fermentation protocols, and utilizing low-cost raw materials are proposed to promote efficient and sustainable production of violacein.

Key words: 紫色杆菌素, vioABCDE, 菌株改造, 生物合成

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