Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor

Koeck DE, Maus I, Wibberg D, Winkler A, Zverlov VV, Liebl W, Pühler A, Schwarz WH, Schlüter A (2015)
Journal of Biotechnology 214: 59-60.

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A novel bacterial species was isolated from an industrial-scale biogas plant. The isolate Herbinix hemicellulosilytica T3/55(T) is able to degrade crystalline cellulose. Comparative 16S rRNA gene sequencing demonstrated that the isolate is closely related to environmental samples forming a hitherto unknown sub-cluster within the family Lachnospiraceae. The draft genome sequence of strain T3/55(T) was established and now provides the genetic basis for application of this microorganism in thermophilic degradation of lignocellulosic biomass. (C) 2015 Published by Elsevier B.V.
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Koeck DE, Maus I, Wibberg D, et al. Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor. Journal of Biotechnology. 2015;214:59-60.
Koeck, D. E., Maus, I., Wibberg, D., Winkler, A., Zverlov, V. V., Liebl, W., Pühler, A., et al. (2015). Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor. Journal of Biotechnology, 214, 59-60. doi:10.1016/j.jbiotec.2015.07.022
Koeck, D. E., Maus, I., Wibberg, D., Winkler, A., Zverlov, V. V., Liebl, W., Pühler, A., Schwarz, W. H., and Schlüter, A. (2015). Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor. Journal of Biotechnology 214, 59-60.
Koeck, D.E., et al., 2015. Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor. Journal of Biotechnology, 214, p 59-60.
D.E. Koeck, et al., “Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor”, Journal of Biotechnology, vol. 214, 2015, pp. 59-60.
Koeck, D.E., Maus, I., Wibberg, D., Winkler, A., Zverlov, V.V., Liebl, W., Pühler, A., Schwarz, W.H., Schlüter, A.: Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor. Journal of Biotechnology. 214, 59-60 (2015).
Koeck, Daniela E., Maus, Irena, Wibberg, Daniel, Winkler, Anika, Zverlov, Vladimir V., Liebl, Wolfgang, Pühler, Alfred, Schwarz, Wolfgang H., and Schlüter, Andreas. “Draft genome sequence of Herbinix hemicellulosilytica T3/55(T), a new thermophilic cellulose degrading bacterium isolated from a thermophilic biogas reactor”. Journal of Biotechnology 214 (2015): 59-60.
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9 Citations in Europe PMC

Data provided by Europe PubMed Central.

Characterization of the arabinoxylan-degrading machinery of the thermophilic bacterium Herbinix hemicellulosilytica-Six new xylanases, three arabinofuranosidases and one xylosidase.
Mechelke M, Koeck DE, Broeker J, Roessler B, Krabichler F, Schwarz WH, Zverlov VV, Zverlov VV, Liebl W., J Biotechnol 257(), 2017
PMID: 28450260
The completely annotated genome and comparative genomics of the Peptoniphilaceae bacterium str. ING2-D1G, a novel acidogenic bacterium isolated from a mesophilic biogas reactor.
Tomazetto G, Hahnke S, Langer T, Wibberg D, Blom J, Maus I, Pühler A, Klocke M, Schlüter A., J Biotechnol 257(), 2017
PMID: 28595834
Genomics and prevalence of bacterial and archaeal isolates from biogas-producing microbiomes.
Maus I, Bremges A, Stolze Y, Hahnke S, Cibis KG, Koeck DE, Kim YS, Kreubel J, Hassa J, Wibberg D, Weimann A, Off S, Stantscheff R, Zverlov VV, Schwarz WH, König H, Liebl W, Scherer P, McHardy AC, Sczyrba A, Klocke M, Pühler A, Schlüter A., Biotechnol Biofuels 10(), 2017
PMID: 29158776
Deep metagenome and metatranscriptome analyses of microbial communities affiliated with an industrial biogas fermenter, a cow rumen, and elephant feces reveal major differences in carbohydrate hydrolysis strategies.
Güllert S, Fischer MA, Turaev D, Noebauer B, Ilmberger N, Wemheuer B, Alawi M, Rattei T, Daniel R, Schmitz RA, Grundhoff A, Streit WR., Biotechnol Biofuels 9(), 2016
PMID: 27279900
Draft Genome Sequence of Propionispora sp. Strain 2/2-37, a New Xylan-Degrading Bacterium Isolated from a Mesophilic Biogas Reactor.
Koeck DE, Maus I, Wibberg D, Winkler A, Zverlov VV, Liebl W, Pühler A, Schwarz WH, Schlüter A., Genome Announc 4(3), 2016
PMID: 27340074
Complete Genome Sequence of Herbinix luporum SD1D, a New Cellulose-Degrading Bacterium Isolated from a Thermophilic Biogas Reactor.
Koeck DE, Maus I, Wibberg D, Winkler A, Zverlov VV, Liebl W, Pühler A, Schwarz WH, Schlüter A., Genome Announc 4(4), 2016
PMID: 27445379
Unraveling the microbiome of a thermophilic biogas plant by metagenome and metatranscriptome analysis complemented by characterization of bacterial and archaeal isolates.
Maus I, Koeck DE, Cibis KG, Hahnke S, Kim YS, Langer T, Kreubel J, Erhard M, Bremges A, Off S, Stolze Y, Jaenicke S, Goesmann A, Sczyrba A, Scherer P, König H, Schwarz WH, Zverlov VV, Zverlov VV, Liebl W, Pühler A, Schlüter A, Klocke M., Biotechnol Biofuels 9(), 2016
PMID: 27525040

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