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基于16S rRNA、cbbL和nifH基因序列比较的外硫红螺菌科系统发育与进化

Phylogeny and evolution of the family Ectothiorhodospiraceae based on comparison of 16S rRNA, cbbL and nifH gene sequences.

作者信息

Tourova Tatjana P, Spiridonova Elizaveta M, Berg Ivan A, Slobodova Natalia V, Boulygina Eugenia S, Sorokin Dimitry Yu

机构信息

Winogradsky Institute of Microbiology, Russian Academy of Sciences, Moscow, Russia.

Department of Microbiology, Moscow State University, Moscow, Russia.

出版信息

Int J Syst Evol Microbiol. 2007 Oct;57(Pt 10):2387-2398. doi: 10.1099/ijs.0.65041-0.

Abstract

The occurrence of genes encoding nitrogenase and ribulose-1,5-bisphosphate carboxylase/oxygenase (RubisCO) was investigated in the members of the family Ectothiorhodospiraceae. This family forms a separate phylogenetic lineage within the Gammaproteobacteria according to 16S rRNA gene sequence analysis and mostly includes photo- and chemoautotrophic halophilic and haloalkaliphilic bacteria. The cbbL gene encoding the large subunit of 'green-like' form I RubisCO was found in all strains, except the type strains of Alkalispirillum mobile and Arhodomonas aquaeolei. The nifH gene encoding nitrogenase reductase was present in all investigated species of the phototrophic genera Ectothiorhodospira, Halorhodospira and Thiorhodospira, but not of the genus Ectothiorhodosinus. Unexpectedly, nifH fragments were also obtained for the chemotrophic species Thioalkalispira microaerophila and Alkalilimnicola halodurans, for which diazotrophic potential has not previously been assumed. The cbbL-, nifH- and 16S rRNA gene-based trees were not highly congruent in their branching patterns since, in the 'RubisCO' and 'nitrogenase' trees, representatives of the Ectothiorhodospiraceae are divided in a number of broadly distributed clusters and branches. However, the data obtained may be regarded as evidence of the monophyletic origin of the cbbL and nifH genes in most species within the family Ectothiorhodospiraceae and mainly corresponded to the current taxonomic structure of this family. The cbbL phylogeny of the chemolithoautotrophic sulfur-oxidizers Thioalkalivibrio nitratireducens and Thioalkalivibrio paradoxus and the nitrifier Nitrococcus mobilis deviated significantly from the 16S-rRNA gene-based phylogeny. These species clustered with one of the duplicated cbbL genes of the purple sulfur bacterium Allochromatium vinosum, a member of the family Chromatiaceae.

摘要

研究了外硫红螺菌科成员中编码固氮酶和核酮糖-1,5-二磷酸羧化酶/加氧酶(RubisCO)的基因的存在情况。根据16S rRNA基因序列分析,该科在γ-变形菌纲内形成一个独立的系统发育谱系,主要包括光合和化能自养的嗜盐和嗜盐碱细菌。除运动碱螺菌和水生嗜盐红菌的模式菌株外,在所有菌株中均发现了编码“绿色样”I型RubisCO大亚基的cbbL基因。编码固氮酶还原酶的nifH基因存在于光合属外硫红螺菌属、嗜盐红螺菌属和硫红螺菌属的所有研究物种中,但不存在于外硫红假单胞菌属中令人意外的是,还从嗜微氧硫碱螺旋菌和嗜盐嗜碱嗜盐栖碱菌这两种化能营养物种中获得了nifH片段,此前并未假定它们具有固氮潜力。基于cbbL、nifH和16S rRNA基因的树在分支模式上并不高度一致,因为在“RubisCO”树和“固氮酶”树中,外硫红螺菌科的代表被分为许多广泛分布的簇和分支。然而,所获得的数据可被视为外硫红螺菌科大多数物种中cbbL和nifH基因单系起源的证据,并且主要与该科目前的分类结构相对应。化能自养硫氧化菌反硝化硫碱弧菌和奇异硫碱弧菌以及硝化菌运动硝化球菌的cbbL系统发育与基于16S rRNA基因的系统发育有显著偏差。这些物种与紫色硫细菌嗜酒色杆菌(色杆菌科的成员)的一个重复cbbL基因聚类在一起。

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