首页> 外文期刊>Frontiers in Microbiology >Thiomonas sp. CB2 is able to degrade urea and promote toxic metal precipitation in acid mine drainage waters supplemented with urea
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Thiomonas sp. CB2 is able to degrade urea and promote toxic metal precipitation in acid mine drainage waters supplemented with urea

机译: Thiomonas sp.。 CB2能够在补充尿素的酸性矿山排水中降解尿素并促进有毒金属沉淀

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摘要

The acid mine drainage (AMD) in Carnoulès (France) is characterized by the presence of toxic metals such as arsenic. Several bacterial strains belonging to the Thiomonas genus, which were isolated from this AMD, are able to withstand these conditions. Their genomes carry several genomic islands (GEIs), which are known to be potentially advantageous in some particular ecological niches. This study focused on the role of the “urea island” present in the Thiomonas CB2 strain, which carry the genes involved in urea degradation processes. First, genomic comparisons showed that the genome of Thiomonas sp. CB2, which is able to degrade urea, contains a urea genomic island which is incomplete in the genome of other strains showing no urease activity. The urease activity of Thiomonas sp. CB2 enabled this bacterium to maintain a neutral pH in cell cultures in vitro and prevented the occurrence of cell death during the growth of the bacterium in a chemically defined medium. In AMD water supplemented with urea, the degradation of urea promotes iron, aluminum and arsenic precipitation. Our data show that ureC was expressed in situ , which suggests that the ability to degrade urea may be expressed in some Thiomonas strains in AMD, and that this urease activity may contribute to their survival in contaminated environments.
机译:法国卡诺鲁斯的酸性矿井排水(AMD)的特征在于存在有毒金属,例如砷。从该AMD中分离出的属于Thiomonas属的几种细菌菌株能够经受这些条件。他们的基因组带有几个基因岛(GEI),已知在某些特定的生态位中可能具有优势。这项研究集中在硫脲CB2菌株中存在的“尿素岛”的作用上,该菌株携带与尿素降解过程有关的基因。首先,基因组比较显示Thiomonas sp。的基因组。能够降解尿素的CB2包含一个尿素基因组岛,该岛在其他没有尿素酶活性的菌株的基因组中是不完整的。硫杆菌属的脲酶活性。 CB2使这种细菌能够在体外细胞培养物中维持中性pH值,并防止了在化学成分确定的培养基中细菌生长期间细胞死亡的发生。在补充有尿素的AMD水中,尿素的降解会促进铁,铝和砷的沉淀。我们的数据表明ureC在原位表达,这表明降解脲的能力可能在AMD的某些硫门氏菌菌株中表达,并且这种脲酶活性可能有助于它们在受污染的环境中生存。

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