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基于gyrB基因的核苷酸序列及其产物的氨基酸序列对不动杆菌菌株进行系统发育分析。

Phylogenetic analysis of Acinetobacter strains based on the nucleotide sequences of gyrB genes and on the amino acid sequences of their products.

作者信息

Yamamoto S, Harayama S

机构信息

Marine Biotechnology Institute, Kamaishi Laboratories, Kamaishi City, Iwate, Japan.

出版信息

Int J Syst Bacteriol. 1996 Apr;46(2):506-11. doi: 10.1099/00207713-46-2-506.

Abstract

Partial nucleotide sequences of the gyrB genes (DNA gyrase B subunit genes) of 15 Acinetobacter strains, including the type and reference strains of genomic species 1 to 12 (A. calcoaceticus [genomic species 1], A. baumannii [genomic species 2], Acinetobacter genomic species 3, A. haemolyticus [genomic species 4], A. junii [genomic species 5], Acinetobacter genomic species 6, A. johnsonii [genomic species 7], A. lwoffii [genomic species 8], Acinetobacter genomic species 9, Acinetobacter genomic species 10, Acinetobacter genomic species 11, and A. radioresistens [genomic species 12]), were determined by sequencing the PCR-amplified fragments of gyrB. The gyrB sequence homology among these Acinetobacter strains ranged from 69.6 to 99.7%. A phylogenetic analysis, using the gyrB sequences, indicates that genomic species 1, 2, and 3 formed one cluster (87.3 to 90.3% identity), while genomic species 8 and 9 formed another cluster (99.7% identity). These results are consistent with those of DNA-DNA hybridization and of biochemical systematics. On the other hand, the topology of the published phylogenetic tree based on the 16S rRNA sequences of the Acinetobacter strains was quite different from that of the gyrB-based tree. The numbers of substitution in the 16S rRNA gene sequences were not high enough to construct a reliable phylogenetic tree. The gyrB-based analysis indicates that the genus Acinetobacter is highly diverse and that a reclassification of this genus would be required.

摘要

对15株不动杆菌的gyrB基因(DNA促旋酶B亚基基因)的部分核苷酸序列进行了测定,其中包括基因组种1至12的模式菌株和参考菌株(醋酸钙不动杆菌[基因组种1]、鲍曼不动杆菌[基因组种2]、不动杆菌基因组种3、溶血不动杆菌[基因组种4]、琼氏不动杆菌[基因组种5]、不动杆菌基因组种6、约翰逊不动杆菌[基因组种7]、洛菲不动杆菌[基因组种8]、不动杆菌基因组种9、不动杆菌基因组种10、不动杆菌基因组种11和抗辐射不动杆菌[基因组种12]),通过对gyrB的PCR扩增片段进行测序来完成。这些不动杆菌菌株之间的gyrB序列同源性在69.6%至99.7%之间。利用gyrB序列进行的系统发育分析表明,基因组种1、2和3形成一个簇(同一性为87.3%至90.3%),而基因组种8和9形成另一个簇(同一性为99.7%)。这些结果与DNA-DNA杂交和生化分类学的结果一致。另一方面,基于不动杆菌菌株16S rRNA序列发表的系统发育树的拓扑结构与基于gyrB的树有很大不同。16S rRNA基因序列中的替换数不足以构建可靠的系统发育树。基于gyrB的分析表明,不动杆菌属具有高度多样性,需要对该属进行重新分类。

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