首页> 外文期刊>Microbiology >Kinetic and phylogenetic characterization of an anaerobic dechlorinating microbial community
【24h】

Kinetic and phylogenetic characterization of an anaerobic dechlorinating microbial community

机译:一种厌氧脱氯微生物群落的动力学和系统发育表征

获取原文
           

摘要

The reductive dechlorination (RD) of tetrachloroethene (PCE) to vinyl chloride (VC) and, to a lesser extent, to ethene (ETH) by an anaerobic microbial community has been investigated by studying the processes and kinetics of the main physiological components of the consortium. Molecular hydrogen, produced by methanol-utilizing acetogens, was the electron donor for the PCE RD to VC and ETH without forming any appreciable amount of other chlorinated intermediates and in the near absence of methanogenic activity. The microbial community structure of the consortium was investigated by preparing a 16S rDNA clone library and by fluorescence in situ hybridization (FISH). The PCR primers used in the clone library allowed the harvest of 16S rDNA from both bacterial and archaeal members in the community. A total of 616?clones were screened by RFLP analysis of the clone inserts followed by the sequencing of RFLP group representatives and phylogenetic analysis. The clone library contained sequences mostly from hitherto undescribed bacteria. No sequences similar to those of the known RD bacteria like ‘Dehalococcoides ethenogenes’ or Dehalobacter restrictus were found in the clone library, and none of these bacteria was present in the RD consortium according to FISH. Almost all clones fell into six previously described phyla of the bacterial domain, with the majority (56·6?%) being deep-branching members of the Spirochaetes phylum. Other clones were in the Firmicutes phylum (18·5?%), the Chloroflexi phylum (16·4?%), the Bacteroidetes phylum (6·3?%), the Synergistes genus (1·1?%) and a lineage that could not be affiliated with existing phyla (1·1?%). No archaeal clones were found in the clone library. Owing to the phylogenetic novelty of the microbial community with regard to previously cultured micro-organisms, no specific microbial component(s) could be hypothetically affiliated with the RD phenotype. The predominance of Spirochaetes in the microbial consortium, the main group revealed by clone library analysis, was confirmed by FISH using a purposely developed probe.
机译:通过研究其主要生理组分的方法和动力学,研究了四氯乙烯(PCE)与氯乙烯(Vc)的还原脱氯(Vc)和较小程度上,对厌氧微生物群落的乙烯(eth)进行了研究财团。通过甲醇利用醋Etgeng制备的分子氢是PCE Rd至Vc和Eth的电子给体,而不形成任何可观量的其他氯化中间体,并且在不存在甲烷中活性的情况下。通过制备16S rdNA克隆文库和原位杂交(鱼)的荧光来研究联盟的微生物群落结构。克隆库中使用的PCR引物允许来自社区中的细菌和古成员的16S rdNA收获。总共616克隆的克隆分析克隆分析克隆分析,然后筛选RFLP组代表和系统发育分析。克隆文库主要来自迄今为止未描述的细菌的序列。在克隆文库中没有发现与“脱卤素乙烯醇原料”或Dehalobacters Restrictus类似的已知RD细菌类似的序列,并且这些细菌中没有任何细菌根据鱼类存在于RD联盟中。几乎所有克隆都落入了前面描述的细菌结构域的六个,其中大多数(56·6?%)是螺旋形螺旋体的深层分支成员。其他克隆是在体内场(18·5?%),氯昔洛翁(16·4·%),细菌(6·3·%),增效属(1·1·%)和谱系不能与现有的植物(1·1?%)隶属。在克隆库中没有发现古克隆。由于关于先前培养的微生物的微生物群落的系统发育新颖性,没有用RD表型假设特异性微生物组分。克隆文库分析揭示的主要组螺旋体在微生物联盟中的优势是通过鱼类使用无意发育的探针确认的。

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