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工程嗜热产乙酸细胞工厂的进展与挑战

Progresses and challenges of engineering thermophilic acetogenic cell factories.

作者信息

Bourgade Barbara, Islam M Ahsanul

机构信息

Microbial Chemistry, Department of Chemistry-Ångström Laboratory, Uppsala University, Uppsala, Sweden.

Department of Chemical Engineering, Loughborough University, Loughborough, United Kingdom.

出版信息

Front Microbiol. 2024 Aug 30;15:1476253. doi: 10.3389/fmicb.2024.1476253. eCollection 2024.

Abstract

Thermophilic acetogens are gaining recognition as potent microbial cell factories, leveraging their unique metabolic capabilities to drive the development of sustainable biotechnological processes. These microorganisms, thriving at elevated temperatures, exhibit robust carbon fixation abilities via the linear Wood-Ljungdahl pathway to efficiently convert C substrates, including syngas (CO, CO and H) from industrial waste gasses, into acetate and biomass via the central metabolite acetyl-CoA. This review summarizes recent advancements in metabolic engineering and synthetic biology efforts that have expanded the range of products derived from thermophilic acetogens after briefly discussing their autotrophic metabolic diversity. These discussions highlight their potential in the sustainable bioproduction of industrially relevant compounds. We further review the remaining challenges for implementing efficient and complex strain engineering strategies in thermophilic acetogens, significantly limiting their use in an industrial context.

摘要

嗜热产乙酸菌正逐渐被视为强大的微生物细胞工厂,它们利用独特的代谢能力推动可持续生物技术工艺的发展。这些微生物在高温下生长旺盛,通过线性的伍德-Ljungdahl途径展现出强大的碳固定能力,能够有效地将包括工业废气中的合成气(CO、CO₂ 和 H₂)在内的 C 底物,经由中心代谢物乙酰辅酶 A 转化为乙酸盐和生物质。在简要讨论嗜热产乙酸菌的自养代谢多样性后,本综述总结了代谢工程和合成生物学方面的最新进展,这些进展扩大了嗜热产乙酸菌衍生产品的范围。这些讨论突出了它们在可持续生物生产工业相关化合物方面的潜力。我们还进一步审视了在嗜热产乙酸菌中实施高效且复杂的菌株工程策略所面临的剩余挑战,这些挑战严重限制了它们在工业环境中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d37/11392765/c05552eaa6ea/fmicb-15-1476253-g001.jpg

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