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通过非传统酵母的代谢工程构建生物燃料和高价值化学品的先进生产者。

Metabolic engineering of non-conventional yeasts for construction of the advanced producers of biofuels and high-value chemicals.

作者信息

Sibirny Andriy A

机构信息

Institute of Cell Biology, NAS of Ukraine, Drahomanov Street 14/16, Lviv 79005 Ukraine.

University of Rzeszow, Zelwerowicza 4, Rzeszow 35-601 Poland.

出版信息

BBA Adv. 2022 Dec 22;3:100071. doi: 10.1016/j.bbadva.2022.100071. eCollection 2023.

Abstract

Non-conventional yeasts, i.e. yeasts different from , represent heterogenous group of unicellular fungi consisting of near 1500 species. Some of these species have interesting and sometimes unique properties like ability to grow on methanol, n-alkanes, ferment pentose sugars xylose and l-arabinose, grow at high temperatures (50°С and more), overproduce riboflavin (vitamin B2) and others. These unique properties are important for development of basic science; moreover, some of them possess also significant applied interest for elaboration of new biotechnologies. Current paper represents review of the recent own results and of those of other authors in the field of non-conventional yeast study for construction of the advanced producers of biofuels (ethanol, isobutanol) from lignocellulosic sugars glucose and xylose or crude glycerol () and vitamin B2 (riboflavin) from glucose and cheese whey ().

摘要

非常规酵母,即不同于酿酒酵母的酵母,是由近1500个物种组成的单细胞真菌的异质群体。其中一些物种具有有趣且有时独特的特性,如能够在甲醇、正构烷烃上生长,发酵戊糖木糖和L-阿拉伯糖,在高温(50℃及以上)下生长,过量生产核黄素(维生素B2)等。这些独特的特性对基础科学的发展很重要;此外,其中一些特性对于开发新生物技术也具有重要的应用价值。本文综述了近期在非常规酵母研究领域的自身成果以及其他作者的成果,这些研究旨在构建从木质纤维素糖葡萄糖和木糖或粗甘油生产生物燃料(乙醇、异丁醇)以及从葡萄糖和奶酪乳清生产维生素B2(核黄素)的先进生产者。

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本文引用的文献

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Construction of the advanced flavin mononucleotide producers in the flavinogenic yeast Candida famata.
Yeast. 2023 Aug;40(8):360-366. doi: 10.1002/yea.3843. Epub 2023 Feb 20.
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Microbial production of riboflavin: Biotechnological advances and perspectives.
Metab Eng. 2021 Nov;68:46-58. doi: 10.1016/j.ymben.2021.08.009. Epub 2021 Sep 2.
6
Pentose metabolism and conversion to biofuels and high-value chemicals in yeasts.
FEMS Microbiol Rev. 2021 Aug 17;45(4). doi: 10.1093/femsre/fuaa069.

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