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利用甘蔗渣水解产物进行异丁醇的工程化生产

Engineered Production of Isobutanol from Sugarcane Trash Hydrolysates in .

作者信息

Bumrungtham Pornsiri, Promdonkoy Peerada, Prabmark Kanoknart, Bunterngsook Benjarat, Boonyapakron Katewadee, Tanapongpipat Sutipa, Champreda Verawat, Runguphan Weerawat

机构信息

National Center for Genetic Engineering and Biotechnology, 113 Thailand Science Park, Paholyothin Road, Klong 1, Klong Luang 12120, Pathum Thani, Thailand.

出版信息

J Fungi (Basel). 2022 Jul 25;8(8):767. doi: 10.3390/jof8080767.

Abstract

Concerns over climate change have led to increased interest in renewable fuels in recent years. Microbial production of advanced fuels from renewable and readily available carbon sources has emerged as an attractive alternative to the traditional production of transportation fuels. Here, we engineered the yeast , an industrial powerhouse in heterologous enzyme production, to produce the advanced biofuel isobutanol from sugarcane trash hydrolysates. Our strategy involved overexpressing a heterologous xylose isomerase and the endogenous xylulokinase to enable the yeast to consume both C5 and C6 sugars in biomass. To enable the yeast to produce isobutanol, we then overexpressed the endogenous amino acid biosynthetic pathway and the 2-keto acid degradation pathway. The engineered strains produced isobutanol at a titer of up to 48.2 ± 1.7 mg/L directly from a minimal medium containing sugarcane trash hydrolysates as the sole carbon source. To our knowledge, this is the first demonstration of advanced biofuel production using agricultural waste-derived hydrolysates in the yeast . We envision that our work will pave the way for a scalable route to this advanced biofuel and further establish as a versatile production platform for fuels and high-value chemicals.

摘要

近年来,对气候变化的担忧导致人们对可再生燃料的兴趣日益增加。利用可再生且易于获取的碳源通过微生物生产高级燃料,已成为传统运输燃料生产的一种有吸引力的替代方案。在此,我们对酵母进行了工程改造,酵母是异源酶生产的工业主力,使其能够从甘蔗渣水解物中生产高级生物燃料异丁醇。我们的策略包括过表达一种异源木糖异构酶和内源性木酮糖激酶,以使酵母能够利用生物质中的C5和C6糖类。为了使酵母能够生产异丁醇,我们随后过表达了内源性氨基酸生物合成途径和2-酮酸降解途径。工程菌株直接从以甘蔗渣水解物作为唯一碳源的基本培养基中,以高达48.2±1.7mg/L的滴度生产异丁醇。据我们所知,这是首次在酵母中利用农业废弃物衍生的水解物进行高级生物燃料生产的证明。我们设想,我们的工作将为这种高级生物燃料的可扩展生产路线铺平道路,并进一步确立酵母作为燃料和高价值化学品的通用生产平台的地位。

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