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脱硫弧菌和巴氏甲烷八叠球菌共培养物从胆碱产甲烷。

Methanogenesis from Choline by a Coculture of Desulfovibrio sp. and Methanosarcina barkeri.

机构信息

Institut für Mikrobiologie der Universität Göttingen, D-3400 Göttingen, West Germany.

出版信息

Appl Environ Microbiol. 1983 Jan;45(1):161-8. doi: 10.1128/aem.45.1.161-168.1983.

Abstract

A sulfate-reducing vibrio was isolated from a methanogenic enrichment with choline as the sole added organic substrate. This organism was identified as a member of the genus Desulfovibrio and was designated Desulfovibrio strain G1. In a defined medium devoid of sulfate, a pure culture of Desulfovibrio strain G1 fermented choline to trimethylamine, acetate, and ethanol. In the presence of sulfate, more acetate and less ethanol were formed from choline than in the absence of sulfate. When grown in a medium containing sulfate, a coculture of Desulfovibrio strain G1 and Methanosarcina barkeri strain Fusaro degraded choline almost completely to methane, ammonia, and hydrogen sulfide and presumably to carbon dioxide. Methanogenesis occurred in two distinct phases separated by a lag of about 6 days. During the first phase of methanogenesis choline was completely converted to trimethylamine, acetate, hydrogen sulfide, and traces of ethanol by the desulfovibrio. M. barkeri fermented trimethylamine to methane, ammonia, and presumably carbon dioxide via dimethyl- and methylamine as intermediates. Simultaneously, about 60% of the acetate expected was metabolized. In the second phase of methanogenesis, the residual acetate was almost completely catabolized.

摘要

从以胆碱作为唯一添加有机底物的产甲烷富集物中分离到一株硫酸盐还原弧菌。该菌被鉴定为脱硫弧菌属的一个成员,并被命名为脱硫弧菌 G1 株。在不含硫酸盐的限定培养基中,纯培养的脱硫弧菌 G1 将胆碱发酵为三甲胺、乙酸和乙醇。在有硫酸盐存在的情况下,从胆碱生成的乙酸比没有硫酸盐时多,而乙醇则较少。当在含有硫酸盐的培养基中生长时,脱硫弧菌 G1 株和巴氏甲烷八叠球菌 Fusaro 株的共培养物几乎完全将胆碱降解为甲烷、氨和硫化氢,并可能降解为二氧化碳。甲烷生成发生在两个明显的阶段之间,约有 6 天的滞后。在甲烷生成的第一阶段,脱硫弧菌将胆碱完全转化为三甲胺、乙酸、硫化氢和痕量乙醇。巴氏甲烷八叠球菌通过二甲基胺和甲胺作为中间体将三甲胺发酵为甲烷、氨和可能的二氧化碳。同时,大约 60%预期的乙酸被代谢。在甲烷生成的第二阶段,残余的乙酸几乎完全被分解。

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Microbial conversion of choline to trimethylamine requires a glycyl radical enzyme.胆碱向三甲胺的微生物转化需要甘氨酰基自由基酶。
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