The syntrophic obligate proton-reducing bacterium Syntrophus buswellii DSM 102354T, isolated from anaerobic digester sludge, degrades benzoate and possibly hydrocinnamate (phenyl-3-propionate) when grown with a suitable hydrogenotrophic partner. The complete genome sequence data provide insight regarding aromatic compound degradation under thermodynamically limiting conditions when exogenous electron acceptors are absent.

Whole genome sequence of the syntrophic benzoate-degrading bacterium, Syntrophus buswellii DSM 102354T / Gunsalus, Robert P.; Humm, Ethan; Cook, Lauren; Wofford, Neil Q.; James, Kimberly L.; Pellegrini, Matteo; Morselli, Marco; Ha, Sung Min; Mcinerney, Michael J.. - In: MICROBIOLOGY RESOURCE ANNOUNCEMENTS. - ISSN 2576-098X. - (2025). [10.1128/mra.00266-25]

Whole genome sequence of the syntrophic benzoate-degrading bacterium, Syntrophus buswellii DSM 102354T

Morselli, Marco;
2025-01-01

Abstract

The syntrophic obligate proton-reducing bacterium Syntrophus buswellii DSM 102354T, isolated from anaerobic digester sludge, degrades benzoate and possibly hydrocinnamate (phenyl-3-propionate) when grown with a suitable hydrogenotrophic partner. The complete genome sequence data provide insight regarding aromatic compound degradation under thermodynamically limiting conditions when exogenous electron acceptors are absent.
2025
Whole genome sequence of the syntrophic benzoate-degrading bacterium, Syntrophus buswellii DSM 102354T / Gunsalus, Robert P.; Humm, Ethan; Cook, Lauren; Wofford, Neil Q.; James, Kimberly L.; Pellegrini, Matteo; Morselli, Marco; Ha, Sung Min; Mcinerney, Michael J.. - In: MICROBIOLOGY RESOURCE ANNOUNCEMENTS. - ISSN 2576-098X. - (2025). [10.1128/mra.00266-25]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/3031393
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