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Intermediate cellular regeneration counteracts the stop in methanol production from methane by Methylosinus trichosporium OB3b
Article de revue   Open Access   Avec comité de lecture

Intermediate cellular regeneration counteracts the stop in methanol production from methane by Methylosinus trichosporium OB3b

Héloïse Baldo, Louis Cornette de Saint Cyr, Azariel Ruiz-Valencia, Eddy Petit, Loubna Karfane-Atfane, Marie-Pierre Belleville, José Sanchez-Marcano et Laurence Soussan
Chemical Engineering Journal Advances, Vol.25
03/2026

Résumé

Methylosinus trichosporium OB3b stands out as a methanotrophic model strain, widely reported for its high productivity of exogenous methanol from methane. However, the development of this attractive bioprocess is hindered by a limited production time rounding 20 h. The causes of MeOH production stop are not fully understood yet. This work investigated potential cytotoxic impacts of EDTA and NaCl, enzymatic inhibitors together added in the reaction medium to avoid the spontaneous methanol overoxidation. The tested NaCl concentrations did not refrain bacterial cells from proliferating normally, discarding osmotic stress phenomena. But EDTA addition appeared mandatory to yield an efficient MeOH production. Up to date, EDTA precise mode of action is not fully understood and several hypotheses have been reported. In this study, prior EDTA saturation with Cu2+ ions had no effect on MeOH production, suggesting EDTA did not chelate MMO metallic cofactor. EDTA action was consequently assumed to target cell membrane compounds and affect cell integrity. Regenerating cells in their native culture conditions (i.e. without inhibitors) appeared allowing them to recover their hydroxylating activity and produce MeOH with a productivity similar to the initial one, in a faster way than re-cultivation of the bacteria.

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