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齿垢密螺旋体(原布伦普特,1925年)新种,名称修订,以及来自牙周袋的新螺旋体分离株的鉴定

Treponema denticola (ex Brumpt 1925) sp. nov., nom. rev., and identification of new spirochete isolates from periodontal pockets.

作者信息

Chan E C, Siboo R, Keng T, Psarra N, Hurley R, Cheng S L, Iugovaz I

机构信息

Department of Oral Biology, Faculty of Dentistry, McGill University, Montreal, Quebec, Canada.

出版信息

Int J Syst Bacteriol. 1993 Apr;43(2):196-203. doi: 10.1099/00207713-43-2-196.

Abstract

Standard growth and isolation methods were used to obtain five new treponema strains in pure culture from deep periodontal pockets. The strains were identified to the species level by various methods, including agglutination, immunofluorescence, a dot blot immunoassay, electron microscopy, gas-liquid chromatography of metabolic volatile fatty acids, and DNA hybridization. Two isolates were strains of Treponema socranskii; the other three were strains of "Treponema denticola," a species described in 1925 by Brumpt. Because no type strain was designated for this species previously, the name was not included on the Approved Lists of Bacterial Names and has no current nomenclatural standing. We propose that Treponema denticola (ex Brumpt) sp. nov., nom. rev. is a valid and distinct species of the genus Treponema and designate strain ATCC 35405 as the type strain and strains ATCC 33520 and ATCC 35404 as reference strains. T. denticola appears to be the species that is most frequently isolated from periodontal pockets. Unless new isolation and cultivation techniques are introduced, it appears that present technology can yield only isolates belonging to the currently described oral anaerobic spirochete species and that there is little chance of isolating the larger treponemes.

摘要

采用标准的培养和分离方法,从深部牙周袋中获得了5株新的密螺旋体纯培养菌株。通过多种方法对这些菌株进行了种水平的鉴定,包括凝集试验、免疫荧光法、斑点印迹免疫测定、电子显微镜检查、代谢挥发性脂肪酸的气-液色谱分析以及DNA杂交。其中两株为索氏密螺旋体菌株;另外三株为“齿垢密螺旋体”菌株,该种由Brumpt于1925年描述。由于此前该种未指定模式菌株,因此该名称未列入《细菌名称核准名录》,目前没有命名地位。我们提议齿垢密螺旋体(原Brumpt)新种,名称修订,是密螺旋体属的一个有效且独特的种,并指定ATCC 35405菌株为模式菌株,ATCC 33520和ATCC 35404菌株为参考菌株。齿垢密螺旋体似乎是最常从牙周袋中分离出的种。除非引入新的分离和培养技术,否则现有技术似乎只能获得属于目前已描述的口腔厌氧螺旋体种的分离物,分离出更大的密螺旋体的可能性很小。

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