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肺炎克雷伯菌16S rDNA测序:该属内及与其他肠杆菌科细菌的分类关系

Sequencing of 16S rDNA of Klebsiella: taxonomic relations within the genus and to other Enterobacteriaceae.

作者信息

Boye Kit, Hansen Dennis S

机构信息

Department of Clinical Biochemistry, Statens Serum Institut, Copenhagen, Denmark.

出版信息

Int J Med Microbiol. 2003 Feb;292(7-8):495-503. doi: 10.1078/1438-4221-00228.

Abstract

The 16S rDNAs of 20 strains of Klebsiella were sequenced and used for construction of a phylogenetic tree together with already published Enterobacteriaceae 16S rDNA sequences. The taxonomy within the Klebsiella genus, as reflected by the 16S rDNA tree, was in agreement with existing DNA-DNA hybridisation and numerical taxonomy data, indicating that for Klebsiella, 16S rDNA sequencing is a valid method for identification and taxonomical purposes. Five closely related clusters were found in the Klebsiella genus; Cluster I, K. oxytoca; Cluster II, K. terrigena, Cluster III, K. planticola and K. ornithinolytica; Cluster IV, Enterobacter aerogenes (K. mobilis); and Cluster V, K. pneumoniae. The position of Calymmatobacterium granulomatis within the genus and closest to K. pneumoniae was confirmed. For the species K. oxytoca, data seem to indicate a subdivision into two subspecies. In addition, a biochemically aberrant Klebsiella strain (BEC441) that was included in the analysis could not be assigned to any of the known species, but was found to be closest related to K. oxytoca. Furthermore, the high sequence similarity between the two environmental species K. planticola and K. ornithinolytica does not justify a distinction of the two species. Finally, within a 165-bp stretch of the 16S rDNA sequences, species-specific nucleotides were found.

摘要

对20株克雷伯菌的16S rDNA进行测序,并与已发表的肠杆菌科16S rDNA序列一起用于构建系统发育树。16S rDNA树所反映的克雷伯菌属内的分类与现有的DNA - DNA杂交和数值分类数据一致,表明对于克雷伯菌,16S rDNA测序是用于鉴定和分类目的的有效方法。在克雷伯菌属中发现了五个密切相关的簇;簇I,产酸克雷伯菌;簇II,土生克雷伯菌;簇III,植生克雷伯菌和解鸟氨酸克雷伯菌;簇IV,产气肠杆菌(催娩克雷伯菌);簇V,肺炎克雷伯菌。肉芽肿荚膜杆菌在该属内且最接近肺炎克雷伯菌的位置得到了确认。对于产酸克雷伯菌,数据似乎表明可分为两个亚种。此外,分析中纳入的一株生化异常的克雷伯菌菌株(BEC441)不能归为任何已知物种,但发现它与产酸克雷伯菌关系最为密切。此外,环境物种植生克雷伯菌和解鸟氨酸克雷伯菌之间的高序列相似性不足以区分这两个物种。最后,在16S rDNA序列的165 bp片段内,发现了物种特异性核苷酸。

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