...
首页> 外文期刊>BMC Microbiology >Taxonomy and evolution of bacteriochlorophyll a-containing members of the OM60/NOR5 clade of marine gammaproteobacteria: description of Luminiphilus syltensis gen. nov., sp. nov., reclassification of Haliea rubra as Pseudohaliea rubra gen. nov., comb. nov., and emendation of Chromatocurvus halotolerans
【24h】

Taxonomy and evolution of bacteriochlorophyll a-containing members of the OM60/NOR5 clade of marine gammaproteobacteria: description of Luminiphilus syltensis gen. nov., sp. nov., reclassification of Haliea rubra as Pseudohaliea rubra gen. nov., comb. nov., and emendation of Chromatocurvus halotolerans

机译:海洋γ-ProteobacteriaOM60 / NOR5进化枝中包含细菌叶绿素a的成员的分类学和进化:Luminiphilus syltensis gen的描述。十一月,sp。 11月,将Haliea rubra重新分类为Pseudohaliea rubra gen。十一月,梳。十一月,和嗜盐杆菌的修订

获取原文
           

摘要

Background Aerobic gammaproteobacteria affiliated to the OM60/NOR5 clade are widespread in saline environments and of ecological importance in several marine ecosystems, especially the euphotic zone of coastal areas. Within this group a close relationship between aerobic anoxygenic photoheterotrophs and non-phototrophic members has been found. Results Several strains of aerobic red-pigmented bacteria affiliated to the OM60/NOR5 clade were obtained from tidal flat sediment samples at the island of Sylt (North Sea, Germany). Two of the novel isolates, Rap1red and Ivo14T, were chosen for an analysis in detail. Strain Rap1red shared a 16S rRNA sequence identity of 99% with the type strain of Congregibacter litoralis and was genome-sequenced to reveal the extent of genetic microheterogeneity among closely related strains within this clade. In addition, a draft genome sequence was obtained from the isolate Ivo14T, which belongs to the environmental important NOR5-1 lineage that contains so far no cultured representative with a comprehensive description. Strain Ivo14T was characterized using a polyphasic approach and compared with other red-pigmented members of the OM60/NOR5 clade, including Congregibacter litoralis DSM 17192T, Haliea rubra DSM 19751T and Chromatocurvus halotolerans DSM 23344T. All analyzed strains contained bacteriochlorophyll a and spirilloxanthin as photosynthetic pigments. Besides a detailed phenotypic characterization including physiological and chemotaxonomic traits, sequence information based on protein-coding genes and a comparison of draft genome data sets were used to identify possible features characteristic for distinct taxa within this clade. Conclusions Comparative sequence analyses of the pufLM genes of genome-sequenced representatives of the OM60/NOR5 clade indicated that the photosynthetic apparatus of these species was derived from a common ancestor and not acquired by multiple horizontal gene transfer from phylogenetically distant species. An affiliation of the characterized bacteriochlorophyll a-containing strains to different genera was indicated by significant phenotypic differences and pufLM nucleotide sequence identity values below 82%. The revealed high genotypic and phenotypic diversity of closely related strains within this phylogenetic group reflects a rapid evolution and frequent niche separation in the OM60/NOR5 clade, which is possibly driven by the necessities of an adaptation to oligotrophic marine habitats.
机译:背景技术属于OM60 / NOR5进化枝的有氧丙酸杆菌在盐环境中分布广泛,并且在一些海洋生态系统中,特别是沿海地区的富营养区,具有重要的生态意义。在该组中,已经发现有氧产氧光异养菌和非光养性成员之间的密切关系。结果从叙尔特岛(德国北海)的潮滩沉积物样本中获得了与OM60 / NOR5进化枝相关的好氧红色色素菌。选择了两个新颖的分离株Rap1red和Ivo14 T 进行详细分析。 Rap1red菌株与利格链霉菌(Congregibacter litoralis)菌株具有16%的16S rRNA序列同一性,并进行了基因组测序,揭示了该进化枝中密切相关的菌株之间遗传微异质性的程度。此外,从分离物Ivo14 T 中获得了基因组草图序列,该分离物属于环境重要的NOR5-1谱系,到目前为止,该谱系不包含具有完整描述的培养代表。使用多相方法对Ivo14 T 菌株进行了表征,并与OM60 / NOR5进化枝的其他红色色素成员进行了比较,包括枯枝灰杆菌DSM 17192 T ,红叶哈利酵母DSM 19751 < sup> T 和嗜盐菌DSM 23344 T 。所有分析的菌株均含有细菌叶绿素a和螺菌黄质作为光合色素。除了详细的表型特征,包括生理和化学分类特征外,基于蛋白质编码基因的序列信息以及基因组数据集草案的比较,还被用来识别该进化枝中不同分类群的可能特征。结论对OM60 / NOR5进化枝的基因组序列代表的pufLM基因进行的比较序列分析表明,这些物种的光合装置来自一个共同祖先,而不是通过从系统发育远缘物种的多个水平基因转移获得的。显着的表型差异和低于82%的pufLM核苷酸序列同一性值表明了表征的含细菌叶绿素a菌株与不同属的隶属关系。在该系统发生群中,密切相关的菌株显示出高度的基因型和表型多样性,反映了OM60 / NOR5进化枝的快速进化和频繁的生态位分离,这可能是由于适应贫营养型海洋生境的必要性所驱动。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号