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使用新型系统发育标记dnaJ和DNA-DNA杂交技术来阐明气单胞菌属内的相互关系。

Use of the novel phylogenetic marker dnaJ and DNA-DNA hybridization to clarify interrelationships within the genus Aeromonas.

作者信息

Nhung Pham Hong, Hata Hiroyuki, Ohkusu Kiyofumi, Noda Makiko, Shah Mohammad Monir, Goto Keiichi, Ezaki Takayuki

机构信息

Department of Microbiology, Regeneration and Advanced Medical Science, Gifu University Graduate School of Medicine, 1-1 Yanagido, Gifu 501-1194, Japan.

Food Research Laboratories, Mitsui Norin Co. Ltd, 223-1 Miyahara, Fujieda, Shizuoka 426-0133, Japan.

出版信息

Int J Syst Evol Microbiol. 2007 Jun;57(Pt 6):1232-1237. doi: 10.1099/ijs.0.64957-0.

Abstract

The interrelationships of 27 Aeromonas strains were investigated using dnaJ sequences and DNA-DNA hybridization. dnaJ sequence similarities showed a stronger relationship with DNA-DNA relatedness values than did 16S rRNA gene sequence similarities. Additionally, dnaJ sequence analysis, with interspecies divergence over 5.2 % in most cases, gave better resolution than 16S rRNA gene sequences for the differentiation of strains at the species level. Relationships among Aeromonas species were therefore elucidated on the basis of dnaJ sequences and DNA-DNA reassociation. Strains of Aeromonas encheleia and Aeromonas sp. HG11 were unquestionably grouped in the same genetic species, since they shared 98.7 % dnaJ sequence similarity and 82-85 % genomic relatedness. The phylogenetically close relationships obtained from dnaJ sequence analysis (1.7-3.3 % genetic distance) were corroborated by high DNA-DNA relatedness (73-97 %) to support the previous suggestion that Aeromonas culicicola and Aeromonas allosaccharophila are later heterotypic synonyms of Aeromonas veronii. Our findings will contribute to the clarification of controversial relationships in the genus Aeromonas and also demonstrate that analysis of dnaJ sequences can be a powerful tool for interspecies study of the genus.

摘要

利用dnaJ序列和DNA-DNA杂交技术研究了27株气单胞菌菌株之间的相互关系。与16S rRNA基因序列相似性相比,dnaJ序列相似性与DNA-DNA相关性值之间的关系更为密切。此外,在大多数情况下,种间差异超过5.2%的dnaJ序列分析在区分种水平的菌株方面比16S rRNA基因序列具有更好的分辨率。因此,基于dnaJ序列和DNA-DNA重结合阐明了气单胞菌属物种之间的关系。鳗气单胞菌菌株和HG11气单胞菌菌株无疑被归为同一遗传种,因为它们共享98.7%的dnaJ序列相似性和82-85%的基因组相关性。通过高DNA-DNA相关性(73-97%)证实了从dnaJ序列分析中获得的系统发育密切关系(遗传距离为1.7-3.3%),以支持先前的建议,即嗜水气单胞菌和嗜糖气单胞菌是维氏气单胞菌的晚出异名。我们的研究结果将有助于澄清气单胞菌属中有争议的关系,并表明dnaJ序列分析可以成为该属种间研究的有力工具。

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