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一个健壮的酵母底盘:快速生长的全面表征。

A robust yeast chassis: comprehensive characterization of a fast-growing .

机构信息

State Key Laboratory of Microbial Metabolism and School of Life Sciences & Biotechnology, Shanghai Jiao Tong University, Shanghai, China.

出版信息

mBio. 2024 Feb 14;15(2):e0319623. doi: 10.1128/mbio.03196-23. Epub 2024 Jan 12.

Abstract

Robust chassis are critical to facilitate advances in synthetic biology. This study describes a comprehensive characterization of a new yeast isolate XP that grows faster than commonly used research and industrial strains. The genomic, transcriptomic, and metabolomic analyses suggest that the fast growth rate is, in part, due to the efficient electron transport chain and key growth factor synthesis. A toolbox for genetic manipulation of the yeast was developed; we used it to construct l-lactic acid producers for high lactate production. The development of genetically malleable yeast strains that grow faster than currently used strains may significantly enhance the uses of in biotechnology.IMPORTANCEYeast is known as an outstanding starting strain for constructing microbial cell factories. However, its growth rate restricts its application. A yeast strain XP, which grows fast in high concentrations of sugar and acidic environments, is revealed to demonstrate the potential in industrial applications. A toolbox was also built for its genetic manipulation including gene insertion, deletion, and ploidy transformation. The knowledge of its metabolism, which could guide the designing of genetic experiments, was generated with multi-omics analyses. This novel strain along with its toolbox was then tested by constructing an l-lactic acid efficient producer, which is conducive to the development of degradable plastics. This study highlights the remarkable competence of nonconventional yeast for applications in biotechnology.

摘要

稳健的底盘对于推动合成生物学的发展至关重要。本研究全面描述了一种新型酵母分离株 XP,它的生长速度比常用的研究和工业菌株都要快。基因组、转录组和代谢组分析表明,这种快速生长速度部分归因于高效的电子传递链和关键生长因子的合成。我们还开发了一个用于酵母遗传操作的工具包,并用它构建了用于高乳酸生产的 l-乳酸生产菌。开发比目前使用的菌株生长更快的遗传上可塑的酵母菌株可能会显著增强在生物技术中的应用。

重要性:酵母被认为是构建微生物细胞工厂的优秀起始菌株。然而,其生长速度限制了它的应用。一种在高浓度糖和酸性环境中生长迅速的酵母菌株 XP 被证明具有工业应用的潜力。还为其遗传操作构建了一个工具包,包括基因插入、缺失和倍性转化。通过多组学分析生成了其代谢的知识,这可以指导遗传实验的设计。利用该新型菌株及其工具包,构建了高效生产 l-乳酸的菌株,有利于可降解塑料的发展。这项研究突出了非传统酵母在生物技术应用中的显著能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ad8/10865977/ad658c2da2f7/mbio.03196-23.f001.jpg

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