Marounek M, Fliegrova K, Bartos S
Institute of Animal Physiology and Genetics, Czechoslovak Academy of Sciences, Prague.
Appl Environ Microbiol. 1989 Jun;55(6):1570-3. doi: 10.1128/aem.55.6.1570-1573.1989.
Megasphaera elsdenii belongs to the group comprising the ruminal and intestinal lactate- and sugar-fermenting species. In the present study the fermentation characteristics, metabolism of glucose and lactate, and susceptibility to antimicrobial agents of four ruminal strains were investigated. Particular attention was given to the mixed-substrate fermentation pattern and resultant fermentation acid profile. Lactate was utilized more rapidly than glucose in media with both carbon sources. Interaction of the two substrates changed the composition of fermentation end products toward more valerate and less propionate in cultures with glucose and lactate. Contrary to the indications in Bergey's Manual of Systematic Bacteriology, butyrate, not caproate, was the main end product of glucose metabolism. The strains examined were rather insensitive to many antimicrobial compounds, especially to ionophores and other antimicrobial feed additives.
埃氏巨球型菌属于瘤胃和肠道中可发酵乳酸和糖类的菌种。在本研究中,对四株瘤胃菌株的发酵特性、葡萄糖和乳酸代谢以及对抗菌剂的敏感性进行了研究。特别关注了混合底物发酵模式和由此产生的发酵酸谱。在含有两种碳源的培养基中,乳酸比葡萄糖的利用速度更快。两种底物的相互作用使发酵终产物的组成发生变化,在含有葡萄糖和乳酸的培养物中,戊酸增多,丙酸减少。与《伯杰氏系统细菌学手册》中的描述相反,葡萄糖代谢的主要终产物是丁酸,而非己酸。所检测的菌株对许多抗菌化合物相当不敏感,尤其是对离子载体和其他抗菌饲料添加剂。