Glucose/Xylose Co-Fermenting Saccharomyces cerevisiae Increases the Production of Acetyl-CoA Derived n-Butanol From Lignocellulosic Biomass

  • Lee, Yeon-Jung
  • Hoang Nguyen Tran, Phuong
  • Ko, Ja Kyong
  • Gong, Gyeongtaek
  • Um, Youngsoon
  • ... Han, Sung Ok
  • 외 1명
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초록

Efficient xylose catabolism in engineered Saccharomyces cerevisiae enables more economical lignocellulosic biorefinery with improved production yields per unit of biomass. Yet, the product profile of glucose/xylose co-fermenting S. cerevisiae is mainly limited to bioethanol and a few other chemicals. Here, we introduced an n-butanol-biosynthesis pathway into a glucose/xylose co-fermenting S. cerevisiae strain (XUSEA) to evaluate its potential on the production of acetyl-CoA derived products. Higher n-butanol production of glucose/xylose co-fermenting strain was explained by the transcriptomic landscape, which revealed strongly increased acetyl-CoA and NADPH pools when compared to a glucose fermenting wild-type strain. The acetate supplementation expected to support acetyl-CoA pool further increased n-butanol production, which was also validated during the fermentation of lignocellulosic hydrolysates containing acetate. Our findings imply the feasibility of lignocellulosic biorefinery for producing fuels and chemicals derived from a key intermediate of acetyl-CoA through glucose/xylose co-fermentation.

키워드

Saccharomyces cerevisiaeglucosexylose co-fermentationn-butanolacetyl-CoAacetatelignocellulosic biomassGENETICALLY-ENGINEERED STRAINBETA-OXIDATION CYCLEXYLOSEFUELSETHANOLBIOETHANOLCOENZYMEREVERSALACETATE
제목
Glucose/Xylose Co-Fermenting Saccharomyces cerevisiae Increases the Production of Acetyl-CoA Derived n-Butanol From Lignocellulosic Biomass
저자
Lee, Yeon-JungHoang Nguyen Tran, PhuongKo, Ja KyongGong, GyeongtaekUm, YoungsoonHan, Sung OkLee, Sun-Mi
DOI
10.3389/fbioe.2022.826787
발행일
2022-02-16
유형
Article
저널명
Frontiers in Bioengineering and Biotechnology
10