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Methane formation and methane oxidation by methanogenic bacteria.

机译:甲烷生成和产甲烷细菌氧化甲烷。

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摘要

Methanogenic bacteria were found to form and oxidize methane at the same time. As compared to the quantity of methane formed, the amount of methane simultaneously oxidized varied between 0.3 and 0.001%, depending on the strain used. All the nine tested strains of methane producers (Methanobacterium ruminantium, Methanobacterium strain M.o.H., M. formicicum, M. thermoautotrophicum, M. arbophilicum, Methanobacterium strain AZ, Methanosarcina barkeri, Methanospirillum hungatii, and the "acetate organism") reoxidized methane to carbon dioxide. In addition, they assimilated a small part of the methane supplied into cell material. Methanol and acetate also occurred as oxidation products in M. barkeri cultures. Acetate was also formed by the "acetate organism," a methane bacterium unable to use methanogenic substrates other than acetate. Methane was the precursor of the methyl group of the acetate synthesized in the course of methane oxidation. Methane formation and its oxidation were inhibited equally by 2-bromoethanesulfonic acid. Short-term labeling experiments with M. thermoautotrophicum and M. hungatii clearly suggest that the pathway of methane oxidation is not identical with a simple back reaction of the methane formation process.
机译:发现产甲烷细菌同时形成并氧化了甲烷。与所形成的甲烷量相比,同时氧化的甲烷量在0.3%和0.001%之间变化,这取决于所使用的应变。甲烷生产者的所有九个受试菌株(反刍动物甲烷杆菌,MoH甲烷菌株,formicicum菌株,嗜热自养M.嗜热甲烷杆菌,M。arbophilicum,Methanobacterium菌株AZ,Methanosarcina barkeri,Methanospirillum Hangatii和“乙酸生物”)都将甲烷重新氧化为二氧化碳。此外,他们吸收了供应到电池材料中的一小部分甲烷。甲醇和乙酸盐也作为巴克氏杆菌培养物中的氧化产物出现。醋酸盐也由“醋酸盐生物”形成,这是一种甲烷细菌,无法使用除醋酸盐以外的产甲烷物质。甲烷是在甲烷氧化过程中合成的乙酸酯的甲基的前体。 2-溴乙烷磺酸同等地抑制了甲烷的形成及其氧化。用嗜热毁丝霉和匈牙利红霉的短期标记实验清楚地表明,甲烷氧化的途径与甲烷形成过程的简单逆反应并不相同。

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