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酸氨基球菌属,发酵酸氨基球菌,厌氧革兰氏阴性双球菌,利用氨基酸作为生长的唯一能量来源。

Acidaminococcus gen. n., Acidaminococcus fermentans sp. n., anaerobic gram-negative diplococci using amino acids as the sole energy source for growth.

作者信息

Rogosa M

出版信息

J Bacteriol. 1969 May;98(2):756-66. doi: 10.1128/jb.98.2.756-766.1969.

DOI:10.1128/jb.98.2.756-766.1969
PMID:5784223
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC284882/
Abstract

Acidaminococcus gen. n. and the type species Acidaminococcus fermentans sp. n. were described. Amino acids, of which glutamic acid is the most important, could serve as the sole energy source for growth. Acetic and butyric acids and CO(2) were produced; propionic acid and hydrogen were not produced. Amino acid media supporting growth and the amino acid and vitamin requirements were described. Glucose was frequently not fermented or was weakly catabolized. Derivative products from glucose autoclaved in media, but not glucose itself, stimulated or were required for growth in amino acid media. A wide range of polyols and carbohydrates were not attacked. Lactate, fumarate, malate, succinate, citrate, and pyruvate were not used as energy sources for growth. Pyruvate completely suppressed growth. Cytochrome oxidase and benzidine reactions were negative; catalase, indole, acetyl methyl carbinol, and H(2)S were not produced; nitrate and sulfonthalein indicators were not reduced; ammonia was produced; gelatin liquefaction was negative or slow and partial; vancomycin (7.5 mug/ml) was resisted. Acidaminococcus was different from Veillonella in morphology, serology, nutrition, utilization of substrates, and accumulation of products in media supporting growth; Acidaminococcus resembled Peptococcus in utilization of glutamic acid and accumulation of similar products, but the two genera differed in morphology, gram reaction, serology, guanine plus cytosine content of deoxyribonucleic acid, and nutrition.

摘要

描述了氨基酸球菌属新属及模式种发酵氨基酸球菌新种。氨基酸(其中谷氨酸最为重要)可作为生长的唯一能量来源。产生了乙酸和丁酸以及二氧化碳;未产生丙酸和氢气。描述了支持生长的氨基酸培养基以及氨基酸和维生素需求。葡萄糖通常不被发酵或仅被微弱分解代谢。培养基中经高压灭菌的葡萄糖的衍生产品而非葡萄糖本身,可刺激氨基酸培养基中的生长或为其生长所必需。多种多元醇和碳水化合物未被利用。乳酸、富马酸、苹果酸、琥珀酸、柠檬酸和丙酮酸未被用作生长的能量来源。丙酮酸完全抑制生长。细胞色素氧化酶和联苯胺反应为阴性;不产生过氧化氢酶、吲哚、乙酰甲基甲醇和硫化氢;不还原硝酸盐和磺基酚酞指示剂;产生氨;明胶液化呈阴性或缓慢且不完全;对万古霉素(7.5微克/毫升)具有抗性。氨基酸球菌在形态、血清学、营养、底物利用以及支持生长的培养基中的产物积累方面与韦荣球菌不同;氨基酸球菌在谷氨酸利用和类似产物积累方面与消化球菌相似,但这两个属在形态、革兰氏反应、血清学、脱氧核糖核酸中鸟嘌呤加胞嘧啶含量以及营养方面存在差异。

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