[医院源农杆菌的分类地位]。

Annales de microbiologie Pub Date : 1984-05-01
M Y Popoff, K Kersters, M Kiredjian, I Miras, C Coynault
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引用次数: 0

摘要

收集了31株作为农杆菌和放射杆菌的菌株进行了详细的表型和基因组研究。这些菌株是从植物、土壤、水和临床标本中分离得到的。其中还包括了A. tummefaciens、A. radiobacter、A. rhizgenes和A. rubi型菌株。研究人员测试了这些菌株利用169种有机化合物作为碳和能源来源的能力。此外,对每个品系的11个常规性状进行了研究。通过测定异源DNA制剂中再关联的程度来评估菌株之间的亲缘关系。利用S1核酸酶和二乙胺乙基纤维素过滤器分离重结合与非重结合的核苷酸序列,并测定相关核苷酸序列的热稳定性。结果表明:不管它们的植物致病作用如何,产3-酮乳杆菌和放射杆菌都归为一种;本种包含9个分类群,可通过表型和基因组特征进行区分;临床分离株在植物上不诱导肿瘤,聚集在该物种的3个分类群中;这些生物的临床和生态学意义尚不清楚;目前对农杆菌属的分类是基于植物致病性的,不能反映这些细菌之间的系统发育关系;如先前一些工作者提出的那样,根据表型和基因组特征将农杆菌属划分为3个种。讨论了农杆菌的分类和命名的不同方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Taxonomic position of Agrobacterium strains of hospital origin].

A collection of 31 strains received as Agrobacterium tumefaciens and A. radiobacter was subjected to detailed phenotypic and genomic studies. These strains were recovered from plants, soil, water and clinical specimens. Type strains of A. tumefaciens, A. radiobacter, A. rhizogenes and A. rubi were also included. The strains were tested for their ability to use 169 organic compounds as sources of carbon and energy. In addition, 11 conventional characters were studied for each strain. Relatedness among the strains was assessed by determining the extent of reassociation in heterologous DNA preparations. S1 nuclease and diethylaminoethyl-cellulose filters were used to separate reassociated from non-reassociated nucleotide sequences, and to determine the thermal stability of related nucleotide sequences. The resultant data revealed the following points: regardless of their phytopathogenic effects, 3-ketolactose-producing A. tumefaciens and A. radiobacter strains group into one species; this species contains 9 taxa which can be differentiated from each other by phenotypic and genomic characters; clinical isolates did not induce tumours on plants and clustered in three taxa of this species; the clinical and ecological significance of these organisms is not known; the present classification of the genus Agrobacterium is based on phytopathogenicity and does not reflect the phylogenetic relationships amongst these bacteria; as proposed previously by several workers, the genus Agrobacterium should be divided into 3 species on the basis of phenotypic and genomic characteristics. Different aspects of the classification and nomenclature of Agrobacterium are discussed.

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