利用质粒稳定系统的代谢工程策略构建大肠杆菌无抗生素核黄素生产体。

IF 4.4 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Synthetic and Systems Biotechnology Pub Date : 2024-12-06 DOI:10.1016/j.synbio.2024.12.001
Xiaoling Zhang , Yanan Li , Kang Wang , Jilong Yin , Yuxuan Du , Zhen Yang , Xuewei Pan , Jiajia You , Zhiming Rao
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引用次数: 0

摘要

核黄素是一种重要的维生素,用于医药产品和饲料添加剂,主要是通过代谢工程细菌发酵生产的。然而,在生产过程中对抗生素的依赖导致了成本和安全风险的增加。为了解决这些挑战,利用代谢工程方法结合一种新的质粒稳定系统构建了一种无抗生素的大肠杆菌核黄素生产者。最初,竞争途径和反馈抑制被减弱,以增强对核黄素的代谢通量。嘌呤途径中的关键基因被过度表达以提高核黄素前体的可用性。随后,筛选并鉴定了基于毒素的质粒稳定体系,传代10天后质粒保留率为84.9%。最后,全基因组水平的转录组学分析揭示了几个限速基因,包括pgl、gnd和yigB,这些基因随后被上调,导致核黄素产量提高26%。通过对培养基的优化,最终菌株在无抗生素的5 L生物反应器中,核黄素产量为11.5 g/L,葡萄糖产量为90.4 mg/g。这些策略可以扩展到其他基于质粒的核黄素衍生物生产系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Construction of antibiotic-free riboflavin producer in Escherichia coli by metabolic engineering strategies with a plasmid stabilization system
Riboflavin, an important vitamin utilized in pharmaceutical products and as a feed additive, is mainly produced by metabolically engineered bacterial fermentation. However, the reliance on antibiotics in the production process leads to increased costs and safety risks. To address these challenges, an antibiotic-free Escherichia coli riboflavin producer was constructed using metabolic engineering approaches coupled with a novel plasmid stabilization system. Initially, competitive pathways and feedback inhibition were attenuated to enhance the metabolic flux towards riboflavin. Key genes in the purine pathway were overexpressed to boost the availability of riboflavin precursors. Subsequently, a plasmid stabilization system based on toxin was screened and characterized, achieving a plasmid retention rate of 84.9% after 10 days of passaging. Finally, transcriptomic analysis at the genome-wide level revealed several rate-limiting genes, including pgl, gnd, and yigB, which were subsequently upregulated, leading to a 26% improvement in riboflavin production. With optimization of the culture medium, the final strain allowed the production of 11.5 g/L of riboflavin with a yield of 90.4 mg/g glucose in 5 L bioreactors without antibiotics. These strategies can be extended to other plasmid-based riboflavin derivative production systems.
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来源期刊
Synthetic and Systems Biotechnology
Synthetic and Systems Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
6.90
自引率
12.50%
发文量
90
审稿时长
67 days
期刊介绍: Synthetic and Systems Biotechnology aims to promote the communication of original research in synthetic and systems biology, with strong emphasis on applications towards biotechnology. This journal is a quarterly peer-reviewed journal led by Editor-in-Chief Lixin Zhang. The journal publishes high-quality research; focusing on integrative approaches to enable the understanding and design of biological systems, and research to develop the application of systems and synthetic biology to natural systems. This journal will publish Articles, Short notes, Methods, Mini Reviews, Commentary and Conference reviews.
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