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Electron shuttling to ferrihydrite selects for fermentative rather than Fe3+-reducing biomass in xylose-fed batch reactors derived from three different inoculum sources

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논문

Electron shuttling to ferrihydrite selects for fermentative rather than Fe3+-reducing biomass in xylose-fed batch reactors derived from three different inoculum sources

학술지

Biotechnology and bioengineering

저자명

Popovic, Jovan; Finneran, Kevin T.

초록

<P><B>Abstract</B></P><P>Reports suggest that ferric iron and electron shuttling molecules will select for Fe<SUP>3+</SUP>&mdash;reducer dominated microbial biomass. We investigated the influence of the redox mediators anthraquinone&#8208;2,6&#8208;disulfonate (AQDS) and riboflavin using xylose as the sole fermentation substrate, with or without ferric iron. Electron shuttling to insoluble ferrihydrite enhanced solventogenesis, acidogenesis, hydrogen production, and xylose consumption, relative to the cells plus xylose controls in fermentations inoculated with woodland marsh sediment, wetwood disease, or raw septic liquid, over multiple transfers in 15&#8208;day batch fermentations. 16S rRNA gene based community analyses indicated that ferrihydrite alone, and AQDS/riboflavin plus ferrihydrite, immediately shifted native heterogeneous communities to those predominantly belonging to the <I>Clostdridiales</I>, rather than stimulating Fe<SUP>3+</SUP> respiring populations. Data were similar irrespective of the inoculum source, suggesting that Fe<SUP>3+</SUP> and/or electron shuttling compounds select for rapid proliferation of fermentative genera when fermentable substrates are present, and increases the extent of xylose consumption and solvent production.</P>

발행연도

2018

ISSN

0006-3592

ISSN

1097-0290

115

3

페이지

pp.577-585

주제어

bioremediation; butanol; fermentation; hydrogen; mixed culture; xylose

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1 2023-12-11
2 2023-12-11

논문; 2018-12-31

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