Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions

Tomazetto G, Hahnke S, Wibberg D, Pühler A, Klocke M, Schlüter A (2018)
Biotechnology Reports 18: e00254.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Tomazetto, Geizecler; Hahnke, Sarah; Wibberg, DanielUniBi; Pühler, AlfredUniBi ; Klocke, Michael; Schlüter, AndreasUniBi
Erscheinungsjahr
2018
Zeitschriftentitel
Biotechnology Reports
Band
18
Art.-Nr.
e00254
eISSN
2215-017X
Page URI
https://pub.uni-bielefeld.de/record/2920168

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Tomazetto G, Hahnke S, Wibberg D, Pühler A, Klocke M, Schlüter A. Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions. Biotechnology Reports. 2018;18: e00254.
Tomazetto, G., Hahnke, S., Wibberg, D., Pühler, A., Klocke, M., & Schlüter, A. (2018). Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions. Biotechnology Reports, 18, e00254. https://doi.org/10.1016/j.btre.2018.e00254
Tomazetto, Geizecler, Hahnke, Sarah, Wibberg, Daniel, Pühler, Alfred, Klocke, Michael, and Schlüter, Andreas. 2018. “Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions”. Biotechnology Reports 18: e00254.
Tomazetto, G., Hahnke, S., Wibberg, D., Pühler, A., Klocke, M., and Schlüter, A. (2018). Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions. Biotechnology Reports 18:e00254.
Tomazetto, G., et al., 2018. Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions. Biotechnology Reports, 18: e00254.
G. Tomazetto, et al., “Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions”, Biotechnology Reports, vol. 18, 2018, : e00254.
Tomazetto, G., Hahnke, S., Wibberg, D., Pühler, A., Klocke, M., Schlüter, A.: Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions. Biotechnology Reports. 18, : e00254 (2018).
Tomazetto, Geizecler, Hahnke, Sarah, Wibberg, Daniel, Pühler, Alfred, Klocke, Michael, and Schlüter, Andreas. “Proteiniphilum saccharofermentans str. M3/6 T isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions”. Biotechnology Reports 18 (2018): e00254.
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