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海洋类交替单胞菌属变形菌之间的系统发育关系:交替单胞菌科的修订描述及新科假交替单胞菌科、新科科尔韦尔氏菌科、新科希瓦氏菌科、新科莫里塔氏菌科、新科铁单胞菌科、新科独特海洋菌科和新科嗜冷单胞菌科的提议

Phylogenetic relationships among marine Alteromonas-like proteobacteria: emended description of the family Alteromonadaceae and proposal of Pseudoalteromonadaceae fam. nov., Colwelliaceae fam. nov., Shewanellaceae fam. nov., Moritellaceae fam. nov., Ferrimonadaceae fam. nov., Idiomarinaceae fam. nov. and Psychromonadaceae fam. nov.

作者信息

Ivanova Elena P, Flavier Sébastien, Christen Richard

机构信息

Pacific Institute of Bioorganic Chemistry of the Far-Eastern Branch of the Russian Academy of Sciences, 690022 Vladivostok, Pr. 100 Let Vladivostoku 159, Russian Federation.

Industrial Research Institute Swinburne, Swinburne University of Technology, PO Box 218, Hawthorn, Vic 3122, Australia.

出版信息

Int J Syst Evol Microbiol. 2004 Sep;54(Pt 5):1773-1788. doi: 10.1099/ijs.0.02997-0.

Abstract

The phylogenetic relationships among marine Alteromonas-like bacteria of the genera Alteromonas, Pseudoalteromonas, Glaciecola, Thalassomonas, Colwellia, Idiomarina, Oceanimonas, Oceanisphaera, Shewanella, Moritella, Ferrimonas, Psychromonas and several other genera of the 'Gammaproteobacteria' were studied. Results of 16S rRNA gene sequence analyses revealed that some members of these genera formed several coherent groups at the family level. Characteristic signature oligonucleotides for studied taxa were defined. Signature positions are divided into three classes: (i) single compensatory mutations, (ii) double compensatory mutations and (iii) mutations affecting nucleotides not paired in the secondary structure. The 16S rRNA gene sequence similarity level within genera was 93 % or above. This value can be a useful additional criterion for genus discrimination. On the basis of this work and previous polyphasic taxonomic studies, the circumscription of the family Alteromonadaceae is limited to the genera Alteromonas and Glaciecola and the creation is proposed of the families Pseudoalteromonadaceae fam. nov. to accommodate bacteria of the genera Pseudoalteromonas and Algicola gen. nov. (formerly Pseudoalteromonas bacteriolytica) and Colwelliaceae fam. nov. to accommodate bacteria of the genera Colwellia and Thalassomonas. Bacteria of the genera Oceanimonas and Oceanisphaera formed a robust cluster and shared common signature oligonucleotides. Because of deep branching and lack of association with any other genus, the following families are proposed that include single genera: Idiomarinaceae fam. nov., Psychromonadaceae fam. nov., Moritellaceae fam. nov., Ferrimonadaceae fam. nov. and Shewanellaceae fam. nov. Finally, this study also revealed that [Hyphomicrobium] indicum should be reclassified as Photobacterium indicum comb. nov.

摘要

研究了交替单胞菌属、假交替单胞菌属、嗜冷杆菌属、海单胞菌属、科尔韦氏菌属、嗜冷栖热菌属、海洋单胞菌属、海洋球杆菌属、希瓦氏菌属、莫拉氏菌属、铁还原单胞菌属、嗜冷单胞菌属以及“γ-变形菌纲”其他几个属中类似海洋交替单胞菌的细菌之间的系统发育关系。16S rRNA基因序列分析结果表明,这些属的一些成员在科级水平上形成了几个连贯的类群。定义了所研究分类单元的特征性标志性寡核苷酸。标志性位置分为三类:(i)单补偿突变,(ii)双补偿突变,(iii)影响二级结构中未配对核苷酸的突变。属内16S rRNA基因序列相似性水平为93%或更高。该值可作为属鉴别有用的附加标准。基于这项工作和先前的多相分类研究,交替单胞菌科的范围仅限于交替单胞菌属和嗜冷杆菌属,并建议创建假交替单胞菌科(新科)以容纳假交替单胞菌属和新属Algicola(以前的溶藻假交替单胞菌)的细菌,以及科尔韦氏菌科(新科)以容纳科尔韦氏菌属和海单胞菌属的细菌。海洋单胞菌属和海洋球杆菌属的细菌形成了一个稳定的聚类,并共享共同的标志性寡核苷酸。由于分支较深且与其他任何属均无关联,建议设立以下包含单一属的科:嗜冷栖热菌科(新科)、嗜冷单胞菌科(新科)、莫拉氏菌科(新科)、铁还原单胞菌科(新科)和希瓦氏菌科(新科)。最后,本研究还表明,印度生丝微菌应重新分类为印度发光杆菌(新组合)。

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