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首页> 外文期刊>Microorganisms >Systematic Affiliation and Genome Analysis of Subtercola vilae DB165 T with Particular Emphasis on Cold Adaptation of an Isolate from a High-Altitude Cold Volcano Lake
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Systematic Affiliation and Genome Analysis of Subtercola vilae DB165 T with Particular Emphasis on Cold Adaptation of an Isolate from a High-Altitude Cold Volcano Lake

机译:维尔氏Subtercola vilae DB165 T的系统隶属关系和基因组分析,尤其着重于高海拔冷火山湖分离物的冷适应

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Among the Microbacteriaceae the species of Subtercola and Agreia form closely associated clusters. Phylogenetic analysis demonstrated three major phylogenetic branches of these species. One of these branches contains the two psychrophilic species Subtercola frigoramans and Subtercola vilae , together with a larger number of isolates from various cold environments. Genomic evidence supports the separation of Agreia and Subtercola species. In order to gain insight into the ability of S. vilae to adapt to life in this extreme environment, we analyzed the genome with a particular focus on properties related to possible adaptation to a cold environment. General properties of the genome are presented, including carbon and energy metabolism, as well as secondary metabolite production. The repertoire of genes in the genome of S. vilae DB165 T linked to adaptations to the harsh conditions found in Llullaillaco Volcano Lake includes several mechanisms to transcribe proteins under low temperatures, such as a high number of tRNAs and cold shock proteins. In addition, S. vilae DB165 T is capable of producing a number of proteins to cope with oxidative stress, which is of particular relevance at low temperature environments, in which reactive oxygen species are more abundant. Most important, it obtains capacities to produce cryo-protectants, and to combat against ice crystal formation, it produces ice-binding proteins. Two new ice-binding proteins were identified which are unique to S. vilae DB165 T . These results indicate that S. vilae has the capacity to employ different mechanisms to live under the extreme and cold conditions prevalent in Llullaillaco Volcano Lake.
机译:在微细菌科中,Subtercola和Agreia的物种形成紧密相关的簇。系统发育分析表明,这些物种的三个主要系统发育分支。这些分支之一包含两个嗜热物种Subtercola frigoramans和Subtercola vilae,以及来自各种寒冷环境的大量分离株。基因组学证据支持Agreia和Subtercola物种的分离。为了深入了解S. vilae在这种极端环境下适应生命的能力,我们分析了基因组,特别关注与可能适应寒冷环境有关的特性。介绍了基因组的一般特性,包括碳和能量代谢以及次级代谢产物的产生。 vil。S. vilae DB165 T基因组中的基因库与适应Llullaillaco火山湖中的严酷条件有关,包括几种在低温下转录蛋白质的机制,例如大量tRNA和冷休克蛋白质。此外,维氏链球菌DB165 T能够产生多种蛋白质来应对氧化应激,这在活性氧含量更高的低温环境下尤其重要。最重要的是,它具有生产冷冻保护剂和对抗冰晶形成的能力,可以生产冰结合蛋白。鉴定出两种新的冰结合蛋白,它们是S.vilae DB165 T特有的。这些结果表明,S。vilae有能力采用不同的机制在Llullaillaco火山湖中普遍存在的极端和寒冷条件下生活。

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