利用酵母可持续生产游离脂肪酸及其衍生物的先进代谢工程策略。

IF 5.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS Journal of Biological Engineering Pub Date : 2024-12-27 DOI:10.1186/s13036-024-00473-w
Tisa Rani Saha, Nam Kyu Kang, Eun Yeol Lee
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引用次数: 0

摘要

生物生产脂质为生产燃料和化学品提供了一种可持续的方法。酵母被认为是安全的,并通过先进的合成生物学和代谢工程工具得到增强,正在成为工业应用的多功能宿主。然而,脂质主要以甘油三酯的形式在酵母中积累,这对于工业用途来说是次优的。因此,人们一直在努力在酵母中直接生产游离脂肪酸及其衍生物,如脂肪醇、脂肪醛和脂肪酸乙酯。本文综述了酵母代谢工程技术在生产游离脂肪酸及其衍生物方面的研究进展。本研究还探讨了可持续工业脂质生产的当前挑战和未来前景,特别是关注工程策略,使酵母能够利用替代碳源,如二氧化碳、甲醇和醋酸盐,而不是传统的糖。本文综述将指导进一步发展利用酵母进行环境友好和经济可行的脂质生产技术。
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Advanced metabolic Engineering strategies for the sustainable production of free fatty acids and their derivatives using yeast.

The biological production of lipids presents a sustainable method for generating fuels and chemicals. Recognized as safe and enhanced by advanced synthetic biology and metabolic engineering tools, yeasts are becoming versatile hosts for industrial applications. However, lipids accumulate predominantly as triacylglycerides in yeasts, which are suboptimal for industrial uses. Thus, there have been efforts to directly produce free fatty acids and their derivatives in yeast, such as fatty alcohols, fatty aldehydes, and fatty acid ethyl esters. This review offers a comprehensive overview of yeast metabolic engineering strategies to produce free fatty acids and their derivatives. This study also explores current challenges and future perspectives for sustainable industrial lipid production, particularly focusing on engineering strategies that enable yeast to utilize alternative carbon sources such as CO2, methanol, and acetate, moving beyond traditional sugars. This review will guide further advancements in employing yeasts for environmentally friendly and economically viable lipid production technologies.

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来源期刊
Journal of Biological Engineering
Journal of Biological Engineering BIOCHEMICAL RESEARCH METHODS-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
CiteScore
7.10
自引率
1.80%
发文量
32
审稿时长
17 weeks
期刊介绍: Biological engineering is an emerging discipline that encompasses engineering theory and practice connected to and derived from the science of biology, just as mechanical engineering and electrical engineering are rooted in physics and chemical engineering in chemistry. Topical areas include, but are not limited to: Synthetic biology and cellular design Biomolecular, cellular and tissue engineering Bioproduction and metabolic engineering Biosensors Ecological and environmental engineering Biological engineering education and the biodesign process As the official journal of the Institute of Biological Engineering, Journal of Biological Engineering provides a home for the continuum from biological information science, molecules and cells, product formation, wastes and remediation, and educational advances in curriculum content and pedagogy at the undergraduate and graduate-levels. Manuscripts should explore commonalities with other fields of application by providing some discussion of the broader context of the work and how it connects to other areas within the field.
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