...
首页> 外文期刊>Journal of applied microbiology >Mediation of arsenic oxidation by Thiomonas sp. in acid-mine drainage (Carnoules, France)
【24h】

Mediation of arsenic oxidation by Thiomonas sp. in acid-mine drainage (Carnoules, France)

机译:硫杆菌属介导砷氧化。在酸性矿井排水中(法国卡诺莱斯)

获取原文
获取原文并翻译 | 示例
           

摘要

Aims: To isolate, identify, and characterize heterotrophic bacteria in acid-mine drainage that mediate oxidation of As(III). Methods and Results: Samples of acid-mine drainage were collected over a period of 14 months. Heterotrophic and non-obligatory acidophilic bacteria in the samples were cultured on a solid medium (pH 7.0-7.2), and three strains were isolated. The three different strains belong to the genus Thiomonas, and have more than 99% homology with the group Ynysl. Culturing in mineral media demonstrated that the isolated strains used thiosulphate as an energy source, and oxidized iron in the presence of thiosulphate. However, none of the strains were able to oxidize arsenic in the presence of thiosulphate, nor could they use iron or arsenic alone as an energy source. In vitro experiments demonstrated that two of the Thiomonas strains were able to oxidize more than 90% of the As(III) present in the acid-mine drainage, whereas no abiotic oxidation of arsenic occurred. Conclusions: Two strains of newly identified Thiomonas sp. found in acid-mine drainage are capable of oxidizing arsenic. Significance and Impact of Study: These results represent the first reported oxidation of arsenic by Thiomonas sp. Biologically mediated oxidation and subsequent immobilization of arsenic is of great interest for the remediation of contaminated mine sites.
机译:目的:在介导As(III)氧化的酸性矿山排水中分离,鉴定和鉴定异养细菌。方法和结果:在14个月的时间内收集了酸性矿物质的排放样品。在固体培养基(pH 7.0-7.2)中培养样品中的异养和非强制性嗜酸细菌,并分离出三株。这三种不同的菌株属于硫门氏菌属,与Ynysl组具有超过99%的同源性。在矿物培养基中的培养表明,分离出的菌株使用硫代硫酸盐作为能源,并在硫代硫酸盐存在下氧化铁。然而,在硫代硫酸盐存在下,所有菌株均不能氧化砷,也不能单独使用铁或砷作为能源。体外实验表明,两个硫门氏菌菌株能够氧化酸性排泄物中90%以上的As(III),而没有发生砷的非生物氧化。结论:两株新鉴定的Thiomonas sp。在酸性矿山排水中发现的砷能够氧化砷。研究的意义和影响:这些结果代表了首次报道的硫杆菌属(Thiomonas sp。)氧化砷。生物介导的氧化作用和随后的砷固定作用对于修复受污染的矿场非常感兴趣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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