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The Complete Genome Sequence of Cupriavidus metallidurans Strain CH34 a Master Survivalist in Harsh and Anthropogenic Environments

机译:在恶劣和人为环境中主要存活者的库氏铜霉CH34菌株的完整基因组序列

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摘要

Many bacteria in the environment have adapted to the presence of toxic heavy metals. Over the last 30 years, this heavy metal tolerance was the subject of extensive research. The bacterium Cupriavidus metallidurans strain CH34, originally isolated by us in 1976 from a metal processing factory, is considered a major model organism in this field because it withstands milli-molar range concentrations of over 20 different heavy metal ions. This tolerance is mostly achieved by rapid ion efflux but also by metal-complexation and -reduction. We present here the full genome sequence of strain CH34 and the manual annotation of all its genes. The genome of C. metallidurans CH34 is composed of two large circular chromosomes CHR1 and CHR2 of, respectively, 3,928,089 bp and 2,580,084 bp, and two megaplasmids pMOL28 and pMOL30 of, respectively, 171,459 bp and 233,720 bp in size. At least 25 loci for heavy-metal resistance (HMR) are distributed over the four replicons. Approximately 67% of the 6,717 coding sequences (CDSs) present in the CH34 genome could be assigned a putative function, and 9.1% (611 genes) appear to be unique to this strain. One out of five proteins is associated with either transport or transcription while the relay of environmental stimuli is governed by more than 600 signal transduction systems. The CH34 genome is most similar to the genomes of other Cupriavidus strains by correspondence between the respective CHR1 replicons but also displays similarity to the genomes of more distantly related species as a result of gene transfer and through the presence of large genomic islands. The presence of at least 57 IS elements and 19 transposons and the ability to take in and express foreign genes indicates a very dynamic and complex genome shaped by evolutionary forces. The genome data show that C. metallidurans CH34 is particularly well equipped to live in extreme conditions and anthropogenic environments that are rich in metals.
机译:环境中的许多细菌已适应有毒重金属的存在。在过去的30年中,这种对重金属的耐受性成为广泛研究的主题。最初由我们于1976年从一家金属加工厂分离出的库珀维氏金属菌CH34菌株被认为是该领域的主要模式生物,因为它可以承受20多种不同重金属离子的毫摩尔浓度范围。该耐受性主要是通过快速的离子外排,但也可以通过金属络合和还原来实现。我们在这里介绍了菌株CH34的完整基因组序列及其所有基因的手动注释。金属利尿梭菌CH34的基因组由两个分别为3,928,089 bp和2,580,084 bp的大环状染色体CHR1和CHR2,以及两个分别为171,459 bp和233,720 bp的大质粒pMOL28和pMOL30组成。至少25个重金属抗性(HMR)基因座分布在四个复制子上。 CH34基因组中存在的6,717个编码序列(CDS)中,大约67%可能具有推定功能,而9.1%(611个基因)似乎对该菌株是唯一的。五分之一的蛋白质与转运或转录相关,而环境刺激的中继则由600多个信号转导系统控制。通过各自的CHR1复制子之间的对应关系,CH34基因组与其他Cupriavidus菌株的基因组最相似,但由于基因转移和存在大的基因组岛,它与更远距离相关物种的基因组也显示出相似性。至少有57个IS元件和19个转座子的存在以及吸收和表达外源基因的能力表明,由进化力形成的非常动态和复杂的基因组。基因组数据表明,金属利尿假单胞菌CH34特别适合生活在极端条件和富含金属的人为环境中。

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