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澳大利亚发光杆菌属临床分离株的分类学及新亚种光暗共生菌不对称亚种和光暗共生菌澳大利亚亚种的提议

Taxonomy of Australian clinical isolates of the genus Photorhabdus and proposal of Photorhabdus asymbiotica subsp. asymbiotica subsp. nov. and P. asymbiotica subsp. australis subsp. nov.

作者信息

Akhurst R J, Boemare N E, Janssen P H, Peel M M, Alfredson D A, Beard C E

机构信息

Division of Entomology, Commonwealth Scientific and Industrial Research Organization, Canberra ACT 2601, Australia.

Ecologie microbienne des Insectes et Interaction Hôte-pathogène Unité EMIP INRA 1133, Université Montpellier II, 34095 Montpellier CEDEX 5, France.

出版信息

Int J Syst Evol Microbiol. 2004 Jul;54(Pt 4):1301-1310. doi: 10.1099/ijs.0.03005-0.

Abstract

The relationship of Photorhabdus isolates that were cultured from human clinical specimens in Australia to Photorhabdus asymbiotica isolates from human clinical specimens in the USA and to species of the genus Photorhabdus that are associated symbiotically with entomopathogenic nematodes was evaluated. A polyphasic approach that involved DNA-DNA hybridization, phylogenetic analyses of 16S rRNA and gyrB gene sequences and phenotypic characterization was adopted. These investigations showed that gyrB gene sequence data correlated well with DNA-DNA hybridization and phenotypic data, but that 16S rRNA gene sequence data were not suitable for defining species within the genus Photorhabdus. Australian clinical isolates proved to be related most closely to clinical isolates from the USA, but the two groups were distinct. A novel subspecies, Photorhabdus asymbiotica subsp. australis subsp. nov. (type strain, 9802892T=CIP 108025T=ACM 5210T), is proposed, with the concomitant creation of Photorhabdus asymbiotica subsp. asymbiotica subsp. nov. Analysis of gyrB sequences, coupled with previously published data on DNA-DNA hybridization and PCR-RFLP analysis of the 16S rRNA gene, indicated that there are more than the three subspecies of Photorhabdus luminescens that have been described and confirmed the validity of the previously proposed subdivision of Photorhabdus temperata. Although a non-luminescent, symbiotic isolate clustered consistently with P. asymbiotica in gyrB phylogenetic analyses, DNA-DNA hybridization indicated that this isolate does not belong to the species P. asymbiotica and that there is a clear distinction between symbiotic and clinical species of Photorhabdus.

摘要

对从澳大利亚人类临床标本中培养出的发光杆菌属分离株与从美国人类临床标本中分离出的共生发光杆菌分离株以及与昆虫病原线虫共生的发光杆菌属物种之间的关系进行了评估。采用了一种多相方法,包括DNA-DNA杂交、16S rRNA和gyrB基因序列的系统发育分析以及表型特征分析。这些研究表明,gyrB基因序列数据与DNA-DNA杂交和表型数据相关性良好,但16S rRNA基因序列数据不适用于定义发光杆菌属内的物种。事实证明,澳大利亚临床分离株与美国临床分离株关系最为密切,但这两组是不同的。提出了一个新亚种,即澳大利亚共生发光杆菌新亚种(模式菌株,9802892T = CIP 108025T = ACM 5210T),同时创建了共生发光杆菌非对称亚种。对gyrB序列的分析,结合先前发表的关于DNA-DNA杂交和16S rRNA基因的PCR-RFLP分析的数据,表明发光杆菌的亚种不止已描述的三种,并证实了先前提出的温和发光杆菌细分的有效性。尽管在gyrB系统发育分析中,一个非发光的共生分离株始终与共生发光杆菌聚类,但DNA-DNA杂交表明该分离株不属于共生发光杆菌物种,并且发光杆菌的共生和临床物种之间存在明显区别。

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