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Dynamic model-based analysis of furfural and HMF detoxification by pure and mixed batch cultures of S. cerevisiae and S. stipitis

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바이오화학분류
    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 식품첨가제
논문

Dynamic model-based analysis of furfural and HMF detoxification by pure and mixed batch cultures of S. cerevisiae and S. stipitis

학술지

Biotechnology and bioengineering

저자명

Hanly, Timothy J.; Henson, Michael A.

초록

<P><B>ABSTRACT</B></P><P>Inhibitory compounds that result from biomass hydrolysis are an obstacle to the efficient production of second&#8208;generation biofuels. Fermentative microorganisms can reduce compounds such as furfural and 5&#8208;hydroxymethyl furfural (HMF), but detoxification is accompanied by reduced growth rates and ethanol yields. In this study, we assess the effects of these furan aldehydes on pure and mixed yeast cultures consisting of a respiratory deficient mutant of <I>Saccharomyces cerevisiae</I> and wild&#8208;type <I>Scheffersomyces stipitis</I> using dynamic flux balance analysis. Uptake kinetics and stoichiometric equations for the intracellular reduction reactions associated with each inhibitor were added to genome&#8208;scale metabolic reconstructions of the two yeasts. Further modification of the <I>S. cerevisiae</I> metabolic network was necessary to satisfactorily predict the amount of acetate synthesized during HMF reduction. Inhibitory terms that captured the adverse effects of the furan aldehydes and their corresponding alcohols on cell growth and ethanol production were added to attain qualitative agreement with batch experiments conducted for model development and validation. When the two yeasts were co&#8208;cultured in the presence of the furan aldehydes, inoculums that reduced the synthesis of highly toxic acetate produced by <I>S. cerevisiae</I> yielded the highest ethanol productivities. The model described here can be used to generate optimal fermentation strategies for the simultaneous detoxification and fermentation of lignocellulosic hydrolysates by <I>S. cerevisiae</I> and/or <I>S. stipitis</I>. Biotechnol. Bioeng. 2014;111: 272&ndash;284. &copy; 2013 Wiley Periodicals, Inc.</P>

발행연도

2014

ISSN

0006-3592

ISSN

1097-0290

111

2

페이지

pp.272-284

주제어

ethanol; flux balance analysis; lignocellulosic hydrolysate; S. cerevisiae; S. stipitis

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1 2023-12-11

논문; 2014-12-31

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