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Isobutanol production from cellobionic acid in Escherichia coli

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논문

Isobutanol production from cellobionic acid in Escherichia coli

학술지

Microbial cell factories

저자명

Desai, Shuchi H; Rabinovitch-Deere, Christine A; Fan, Zhiliang; Atsumi, Shota

초록

<P><B>Background</B></P><P>Liquid fuels needed for the global transportation industry can be produced from sugars derived from plant-based lignocellulosics. Lignocellulosics contain a range of sugars, only some of which (such as cellulose) have been shown to be utilizable by microorganisms capable of producing biofuels. Cellobionic acid makes up a small but significant portion of lignocellulosic degradation products, and had not previously been investigated as an utilizable substrate. However, aldonic acids such as cellobionic acid are the primary products of a promising new group of lignocellulosic-degrading enzymes, which makes this compound group worthy of study. Cellobionic acid doesn’t inhibit cellulose degradation enzymes and so its inclusion would increase lignocellulosic degradation efficiency. Also, its use would increase overall product yield from lignocellulose substrate. For these reasons, cellobionic acid has gained increased attention for cellulosic biofuel production.</P><P><B>Results</B></P><P>This study describes the discovery that <I>Escherichia coli</I> are naturally able to utilize cellobionic acid as a sole carbon source with efficiency comparable to that of glucose and the construction of an <I>E. coli</I> strain able to produce the drop-in biofuel candidate isobutanol from cellobionic acid. The gene primarily responsible for growth of <I>E. coli</I> on cellobionic acid is <I>ascB</I>, a gene previously thought to be cryptic (expressed only after incurring specific mutations in nearby regulatory genes). In addition to AscB, the <I>ascB</I> knockout strain can be complemented by the cellobionic acid phosphorylase from the fungus <I>Neurospora crassa</I>. An <I>E. coli</I> strain engineered to express the isobutanol production pathway was successfully able to convert cellobionic acid into isobutanol. Furthermore<I>,</I> to demonstrate potential application of this strain in a sequential two-step bioprocessing system, <I>E. coli</I> was grown on hydrolysate (that was degraded by a fungus) and was successfully able to produce isobutanol.</P><P><B>Conclusions</B></P><P>These results demonstrate that cellobionic acid is a viable carbon source for biofuel production. This work suggests that with further optimization, a bacteria-fungus co-culture could be used in decreased-cost biomass-based biofuel production systems.</P>

발행연도

2015

발행기관

BioMed Central

라이선스

cc-by

ISSN

1475-2859

14

페이지

pp.52

주제어

Cellobionic acid; Metabolic engineering; Isobutanol

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1 2023-12-11

논문; 2015-04-15

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