Literature DB >> 19617386

Genetic engineering of Enterobacter asburiae strain JDR-1 for efficient production of ethanol from hemicellulose hydrolysates.

Changhao Bi1, Xueli Zhang, Lonnie O Ingram, James F Preston.   

Abstract

Dilute acid pretreatment is an established method for hydrolyzing the methylglucuronoxylans of hemicellulose to release fermentable xylose. In addition to xylose, this process releases the aldouronate methylglucuronoxylose, which cannot be metabolized by current ethanologenic biocatalysts. Enterobacter asburiae JDR-1, isolated from colonized wood, was found to efficiently ferment both methylglucuronoxylose and xylose in acid hydrolysates of sweet gum xylan, producing predominantly ethanol and acetate. Transformation of E. asburiae JDR-1 with pLOI555 or pLOI297, each containing the PET operon containing pyruvate decarboxylase (pdc) and alcohol dehydrogenase B (adhB) genes derived from Zymomonas mobilis, replaced mixed-acid fermentation with homoethanol fermentation. Deletion of the pyruvate formate lyase (pflB) gene further increased the ethanol yield, resulting in a stable E. asburiae E1(pLOI555) strain that efficiently utilized both xylose and methylglucuronoxylose in dilute acid hydrolysates of sweet gum xylan. Ethanol was produced from xylan hydrolysate by E. asburiae E1(pLOI555) with a yield that was 99% of the theoretical maximum yield and at a rate of 0.11 g ethanol/g (dry weight) cells/h, which was 1.57 times the yield and 1.48 times the rate obtained with the ethanologenic strain Escherichia coli KO11. This engineered derivative of E. asburiae JDR-1 that is able to ferment the predominant hexoses and pentoses derived from both hemicellulose and cellulose fractions is a promising subject for development as an ethanologenic biocatalyst for production of fuels and chemicals from agricultural residues and energy crops.

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Year:  2009        PMID: 19617386      PMCID: PMC2747865          DOI: 10.1128/AEM.01180-09

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  22 in total

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9.  Genetic engineering of Enterobacter asburiae strain JDR-1 for efficient D(--) lactic acid production from hemicellulose hydrolysate.

Authors:  C Bi; X Zhang; J D Rice; L O Ingram; J F Preston
Journal:  Biotechnol Lett       Date:  2009-06-06       Impact factor: 2.461

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Authors:  Changhao Bi; John D Rice; James F Preston
Journal:  Appl Environ Microbiol       Date:  2008-11-14       Impact factor: 4.792

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Authors:  Caryn S Wadler; John F Wolters; Nathaniel W Fortney; Kurt O Throckmorton; Yaoping Zhang; Caroline R Miller; Rachel M Schneider; Evelyn Wendt-Pienkowski; Cameron R Currie; Timothy J Donohue; Daniel R Noguera; Chris Todd Hittinger; Michael G Thomas
Journal:  Biotechnol Biofuels Bioprod       Date:  2022-06-24

2.  Model-driven redox pathway manipulation for improved isobutanol production in Bacillus subtilis complemented with experimental validation and metabolic profiling analysis.

Authors:  Haishan Qi; Shanshan Li; Sumin Zhao; Di Huang; Menglei Xia; Jianping Wen
Journal:  PLoS One       Date:  2014-04-04       Impact factor: 3.240

Review 3.  Role of Escherichia coli in Biofuel Production.

Authors:  Veerendra Koppolu; Veneela Kr Vasigala
Journal:  Microbiol Insights       Date:  2016-07-14
  3 in total

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