Nili N, Brooker J D
Department of Animal Science, Waite Agricultural Research Institute, University of Adelaide, Australia.
Lett Appl Microbiol. 1995 Aug;21(2):69-74. doi: 10.1111/j.1472-765x.1995.tb01009.x.
A completely defined growth medium has been developed to determine the nitrogen requirements for several species of ruminal bacteria, and has revealed two strains which are impaired in de novo biosynthesis of certain amino acids. Using NH4Cl as a sole nitrogen source, the medium supported growth of Butyrivibrio, Selenomonas, Prevotella and Streptococcus species. One strain of B. fibrisolvens (E14) and one strain of P. ruminicola (GA33) did not grow in the presence of NH4Cl until the medium was supplemented with amino acids or peptides. For B. fibrisolvens strain E14, methionine was identified as the specific growth-limiting amino acid although methionine alone did not support growth in the absence of NH4Cl. For P. ruminicola strain GA33, any individual amino acid other than methionine or cysteine could supplement the medium and support growth. Enzyme assays confirmed a lack of NADH and NADPH-dependent glutamate dehydrogenase (GDH) activities in this strain.
已开发出一种完全确定的生长培养基,以确定几种瘤胃细菌的氮需求,并发现了两种在某些氨基酸的从头生物合成中受损的菌株。以氯化铵作为唯一氮源时,该培养基支持丁酸弧菌属、栖粪杆菌属、普雷沃氏菌属和链球菌属细菌的生长。在培养基添加氨基酸或肽之前,一株溶纤维丁酸弧菌(E14)和一株瘤胃普雷沃氏菌(GA33)在氯化铵存在的情况下无法生长。对于溶纤维丁酸弧菌E14菌株,蛋氨酸被确定为特定的生长限制氨基酸,尽管单独的蛋氨酸在没有氯化铵的情况下不能支持生长。对于瘤胃普雷沃氏菌GA33菌株,除蛋氨酸或半胱氨酸外的任何一种氨基酸都可以补充培养基并支持生长。酶分析证实该菌株缺乏NADH和NADPH依赖性谷氨酸脱氢酶(GDH)活性。