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Indirect Evidence Link PCB Dehalogenation with Geobacteraceae in Anaerobic Sediment-Free Microcosms

机译:在无厌氧的微观世界中间接证据链与土壤杆菌一起进行PCB脱卤

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摘要

Although polychlorinated biphenyls (PCBs) production was brought to a halt 30 years ago, recalcitrance to degradation makes them a major environmental pollutant at a global scale. Previous studies confirmed that organohalide-respiring bacteria (OHRB) were capable of utilizing chlorinated congeners as electron acceptor. OHRB belonging to the Phyla Chloroflexi and Firmicutes are nowadays considered as the main PCB-dechlorinating organisms. In this study, we aimed at exploring the involvement of other taxa in PCB dechlorination using sediment-free microcosms (SFMs) and the Delor PCB mixture. High rates of congener dehalogenation (up to 96%) were attained in long-term incubations of up to 692 days. Bacterial communities were dominated by Chloroflexi, Proteobacteria, and Firmicutes, among strictly simplified community structures composed of 12 major phyla only. In a first batch of SFMs, Dehalococcoides mccartyi closely affiliated with strains CG4 and CBDB1 was considered as the main actor associated with congener dehalogenation. Addition of 2-bromoethanesulfonate (BES), a known inhibitor of methanogenic activity in a second batch of SFMs had an adverse effect on the abundance of Dehalococcoides sp. Only two sequences affiliated to this Genus could be detected in two (out of six) BES-treated SFMs, contributing to a mere 0.04% of the communities. BES-treated SFMs showed very different community structures, especially in the contributions of organisms involved in fermentation and syntrophic activities. Indirect evidence provided by both statistical and phylogenetic analysis validated the implication of a new cluster of actors, distantly affiliated with the Family Geobacteraceae (Phylum δ-Proteobacteria), in the dehalogenation of low chlorinated PCB congeners. Members of this Family are known already for their dehalogenation capacity of chlorinated solvents. As a result, the present study widens the knowledge for the phylogenetic reservoir of indigenous PCB dechlorinating taxa.
机译:尽管多氯联苯(PCB)的生产在30年前就已停止,但由于对降解的顽抗使其成为全球范围内的主要环境污染物。先前的研究证实,有机卤化物呼吸细菌(OHRB)能够利用氯化同类物作为电子受体。如今,属于Phyla Chloroflexi和Firmicutes的OHRB被认为是PCB脱氯的主要生物。在这项研究中,我们旨在探索其他类群在使用无沉淀缩微(SFM)和Delor PCB混合物进行PCB脱氯中的作用。在长达692天的长期温育中,获得了较高的同类物脱卤率(高达96%)。在仅由12个主要门组成的严格简化的群落结构中,细菌群落主要由绿叶弯曲菌,变形杆菌和Firmicutes组成。在第一批SFM中,与菌株CG4和CBDB1紧密相关的Dehalococcoidesides mccartyi被认为是与同源脱氢有关的主要因子。在第二批SFM中添加2-溴乙烷磺酸盐(BES)(一种产甲烷活性的已知抑制剂)对Dehalococcoides菌的丰度产生了不利影响。在BES处理过的SFM中,有两个(六个)中只有两个属于该属的序列被检测到,仅占整个社区的0.04%。经BES处理的SFM显示出非常不同的群落结构,尤其是在参与发酵和营养活动的生物体中。统计和系统发育分析提供的间接证据验证了与低聚PCB同类物的脱卤作用中与地缘细菌科(Phylumδ-Proteobacteria)密切相关的一个新的参与者群体的含义。该家族的成员已经以氯化溶剂的脱卤能力而闻名。结果,本研究拓宽了土著多氯联苯脱氯生物分类的系统发育学知识。

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