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首页> 外文期刊>Journal of microbiology and biotechnology >Fumarate Reductase-Producing Enterococci Reduce Methane Production in Rumen Fermentation In Vitro
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Fumarate Reductase-Producing Enterococci Reduce Methane Production in Rumen Fermentation In Vitro

机译:富马酸酯还原酶生产肠球菌减少瘤胃发酵中甲烷的产生

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Biotic agents such as fumarate-reducing bacteria can be used for controlling methane (CH4) production in the rumen. Fumarate-reducing bacteria convert fumarate to succinate by fumarate reductase, ultimately leading to the production of propionate. Fumarate-reducing bacteria in the genus Enterococcus were isolated from rumen fluid samples from slaughtered Korean native goats. The enterococci were identified as Enterococcus faecalis SROD5 and E. faecium SROD by phylogenetic analyses of 16S rRNA gene sequences. The fumarate reductase activities of the SROD5 and SROD strains were 42.13 and 37.05 mM NADH oxidized/min/mg of cellular nitrogen (N), respectively. Supplementation of rumen fermentation in vitro with the SROD5 and SROD strains produced significantly higher propionate, butyrate, and total volatile fatty acid (VFA) concentrations than controls at 12 h; VFA concentrations tended to increase after 24 h of incubation. The generated CH4 concentration was significantly lower in the SROD5 and SROD treatment groups after 24 h of incubation. These findings indicate that E. faecium SROD has potential as a direct-fed microbial additive for increasing total VFAs while decreasing CH4 production in rumen fermentation in vitro.
机译:诸如减少富马酸酯的细菌等生物制剂可用于控制瘤胃中甲烷(CH4)的产生。减少富马酸酯的细菌通过富马酸酯还原酶将富马酸酯转化为琥珀酸酯,最终导致丙酸酯的产生。从屠宰的韩国本土山羊的瘤胃液样品中分离出肠球菌属中的富马酸盐还原菌。通过对16S rRNA基因序列的系统发育分析,肠球菌被鉴定为粪肠球菌SROD5和粪肠球菌SROD。 SROD5和SROD菌株的富马酸酯还原酶活性分别为42.13和37.05 mM NADH氧化/ min / mg细胞氮(N)。 SROD5和SROD菌株在体外补充瘤胃发酵后,在12 h时产生的丙酸根,丁酸根和总挥发性脂肪酸(VFA)浓度明显高于对照组。孵育24小时后,VFA浓度趋于增加。孵育24小时后,SROD5和SROD处理组产生的CH4浓度显着降低。这些发现表明,粪肠球菌SROD有潜力作为直接饲喂微生物添加剂,以增加总VFA,同时降低体外瘤胃发酵中CH4的产生。

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