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Coutilization of D-glucose, D-xylose, and L-arabinose in Saccharomyces cerevisiae by coexpressing the metabolic pathways and evolutionary engineering

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    • 바이오플라스틱
      1. 플라스틱
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      1. 용매
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      3. 연료
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      1. 식품첨가제
논문

Coutilization of D-glucose, D-xylose, and L-arabinose in Saccharomyces cerevisiae by coexpressing the metabolic pathways and evolutionary engineering

학술지

BioMed research international

저자명

Wang, Chengqiang; Zhao, Jianzhi; Qiu, Chenxi; Wang, Shihao; Shen, Yu; Du, Binghai; Ding, Yanqin; Bao, Xiaoming

초록

<P>Efficient and cost-effective fuel ethanol production from lignocellulosic materials requires simultaneous cofermentation of all hydrolyzed sugars, mainly including D-glucose, D-xylose, and L-arabinose.<I> Saccharomyces cerevisiae</I> is a traditional D-glucose fermenting strain and could utilize D-xylose and L-arabinose after introducing the initial metabolic pathways. The efficiency and simultaneous coutilization of the two pentoses and D-glucose for ethanol production in<I> S. cerevisiae</I> still need to be optimized. Previously, we constructed an L-arabinose-utilizing<I> S. cerevisiae</I> BSW3AP. In this study, we further introduced the XI and XR-XDH metabolic pathways of D-xylose into BSW3AP to obtain D-glucose, D-xylose, and L-arabinose cofermenting strain. Benefits of evolutionary engineering: the resulting strain BSW4XA3 displayed a simultaneous coutilization of D-xylose and L-arabinose with similar consumption rates, and the D-glucose metabolic capacity was not decreased. After 120 h of fermentation on mixed D-glucose, D-xylose, and L-arabinose, BSW4XA3 consumed 24% more amounts of pentoses and the ethanol yield of mixed sugars was increased by 30% than that of BSW3AP. The resulting strain BSW4XA3 was a useful chassis for further enhancing the coutilization efficiency of mixed sugars for bioethanol production. </P>

발행연도

2017

발행기관

Hindawi

라이선스

cc-by

ISSN

2314-6133

ISSN

2314-6141

2017

페이지

pp.5318232

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1 2023-12-11

논문; 2017-01-01

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