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The Exiguobacterium genus: biodiversity and biogeography

机译:Exiguobacterium属:生物多样性和生物地理

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Bacteria of the genus Exiguobacterium are low G + C, Gram-positive facultative anaerobes that have been repeatedly isolated from ancient Siberian permafrost. In addition, Exiguobacterium spp. have been isolated from markedly diverse sources, including Greenland glacial ice, hot springs at Yellowstone National Park, the rhizosphere of plants, and the environment of food processing plants. Strains of this hereto little known bacterium that have been retrieved from such different (and often extreme) environments are worthy of attention as they are likely to be specifically adapted to such environments and to carry variations in the genome which may correspond to psychrophilic and thermophilic adaptations. However, comparative genomic investigations of Exiguobacterium spp. from different sources have been limited. In this study, we employed different molecular approaches for the comparative analysis of 24 isolates from markedly diverse environments including ancient Siberian permafrost and hot springs at Yellowstone National Park. Pulsed-field gel electrophoresis (PFGE) with I-CeuI (an intron-encoded endonuclease), AscI and NotI were optimized for the determination of genomic fingerprints of nuclease-producing isolates. The application of a DNA macroarray for 82 putative stress-response genes yielded strain-specific hybridization profiles. Cluster analyses of 16S rRNA gene sequence data, PFGE I-CeuI restriction patterns and hybridization profiles suggested that Exiguobacterium strains formed two distinct divisions that generally agreed with temperature ranges for growth. With few exceptions (e.g., Greenland ice isolate GIC31), psychrotrophic and thermophilic isolates belonged to different divisions.
机译:Exiguobacterium属的细菌是低G + C革兰氏阳性兼性厌氧菌,已从古代西伯利亚多年冻土中反复分离出来。另外,Exiguobacterium spp。已从明显不同的来源中分离出来,包括格陵兰冰川冰,黄石国家公园的温泉,植物的根际以及食品加工厂的环境。从这种不同的(通常是极端的)环境中回收的这种鲜为人知的细菌菌株值得关注,因为它们很可能特别适应于这种环境并携带可能对应于嗜冷和嗜热适应的基因组变异。然而,Exiguobacterium spp的比较基因组研究。来自不同来源的信息受到限制。在这项研究中,我们采用了不同的分子方法,对来自包括西伯利亚多年冻土和黄石国家公园温泉在内的多种环境的24种分离株进行了比较分析。使用I-CeuI(内含子编码的核酸内切酶),AscI和NotI进行脉冲场凝胶电泳(PFGE)进行了优化,可用于确定产生核酸酶的分离株的基因组指纹。 DNA宏阵列对82个假定的应激反应基因的应用产生了菌株特异性杂交谱。对16S rRNA基因序列数据,PFGE I-CeuI限制模式和杂交谱的聚类分析表明,Exiguobacterium菌株形成了两个不同的区域,通常与生长温度范围相符。除少数例外(例如格陵兰冰毒分离株GIC31)外,精神营养和嗜热分离株属于不同的部门。

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