Appl Environ Microbiol. 1997 Aug;63(8):3318-22. doi: 10.1128/aem.63.8.3318-3322.1997.
Pure and mixed cultures of Methylophaga sulfidovorans and Thiobacillus thioparus T5 were grown in continuous cultures on either dimethyl sulfide, dimethyl sulfide and H(inf2)S, or H(inf2)S and methanol. In pure cultures, M. sulfidovorans showed a lower affinity for sulfide than T. thioparus T5. Mixed cultures, grown on dimethyl sulfide, showed coexistence of both species. M. sulfidovorans fully converted dimethyl sulfide to thiosulfate, which was subsequently further oxidized to sulfate by T. thioparus T5. Mixed cultures supplied with sulfide and methanol showed that nearly all the sulfide was used by T. thioparus T5, as expected on the basis of the affinities for sulfide. The sulfide in mixed cultures supplied with dimethyl sulfide and H(inf2)S, however, was used by both bacteria. This result may be explained by the fact that the H(inf2)S-oxidizing capacity of M. sulfidovorans remains fully induced by intracellular H(inf2)S originating from dimethyl sulfide metabolism.
纯培养的和混合培养的 Methylophaga sulfidovorans 和 Thiobacillus thioparus T5 在连续培养中分别以二甲基硫醚、二甲基硫醚和 H(inf2)S 或 H(inf2)S 和甲醇为底物进行生长。在纯培养中,M. sulfidovorans 对硫化物的亲和力低于 T. thioparus T5。在以二甲基硫醚为底物的混合培养中,两种细菌共存。M. sulfidovorans 将二甲基硫醚完全转化为硫代硫酸盐,然后由 T. thioparus T5 将其进一步氧化为硫酸盐。在同时提供硫化物和甲醇的混合培养中,几乎所有的硫化物都被 T. thioparus T5 利用,这与它们对硫化物的亲和力相符。然而,在同时提供二甲基硫醚和 H(inf2)S 的混合培养中,两种细菌都利用了硫化物。这一结果可能是由于 M. sulfidovorans 的 H(inf2)S 氧化能力仍然完全由二甲基硫醚代谢产生的细胞内 H(inf2)S 诱导。