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Spatial Abundance and Distribution of Potential Microbes and Functional Genes Associated with Anaerobic Mineralization of Pentachlorophenol in a Cylindrical Reactor

机译:五氯苯酚在圆柱形反应器中与厌氧矿化相关的潜在微生物和功能基因的空间丰度和分布

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摘要

Functional interplays of microbial activity, genetic diversity and contaminant transformation are poorly understood in reactors for mineralizing halogenated aromatics anaerobically. Here, we investigated abundance and distribution of potential microbes and functional genes associated with pentachlorophenol (PCP) anaerobic mineralization in a continuous-flow cylindrical reactor (15 cm in length). PCP dechlorination and the metabolite (phenol) were observed at segments 0–8 cm from inlet, where key microbes, including potential reductive dechlorinators (Dehalobacter, Sulfurospirillum, Desulfitobacterium and Desulfovibrio spp.) and phenol degraders (Cryptanaerobacter and Syntrophus spp.), as well as putative functional genes, including putative chlorophenol reductive dehalogenase (cprA) and benzoyl-CoA reductase (bamB), were highly enriched simultaneously. Five types of putative cprAs, three types of putative bamBs and seven types of putative nitrogenase reductase (nifHs) were determined, with their copy numbers decreased gradually from inlet to outlet. Distribution of chemicals, bacteria and putative genes confirmed PCP dechlorination and phenol degradation accomplished in segments 0–5 cm and 0–8 cm, respectively, contributing to a high PCP mineralization rate of 3.86 μM d−1. Through long-term incubation, dechlorination, phenol degradation and nitrogen fixation bacteria coexisted and functioned simultaneously near inlet (0–8 cm), verified the feasibility of anaerobic mineralization of halogenated aromatics in the compact reactor containing multiple functional microbes.
机译:在厌氧地卤化芳族化合物的反应器中,微生物活性,遗传多样性和污染物转化的功能相互作用尚不甚了解。在这里,我们研究了与五氯苯酚(PCP)厌氧矿化相关的潜在微生物和功能基因在连续流式圆柱形反应器(长15 cm)中的丰度和分布。在进水口0-8 cm处观察到PCP脱氯和代谢产物(苯酚),其中的关键微生物包括潜在的还原性脱氯剂(脱盐杆菌,硫螺旋菌,脱硫杆菌和脱硫弧菌属)和苯酚降解剂(隐藻和腐殖菌)。同时推定的功能基因,包括推定的氯酚还原性脱卤素酶(cprA)和苯甲酰辅酶A还原酶(bamB),也被高度富集。确定了五种推定的cprAs,三种推定的bamB和七种推定的固氮酶还原酶(nifHs),其拷贝数从入口到出口逐渐减少。化学物质,细菌和推定基因的分布证实了PCP的脱氯作用和苯酚的降解分别在0-5 cm和0-8 cm的区域完成,从而使PCP的矿化率达到了3.86μMd -1 。通过长期孵育,脱氯,苯酚降解和固氮细菌在入口(0-8cm)附近共存并同时起作用,证明了在含有多种功能微生物的紧凑型反应器中卤化芳烃厌氧矿化的可行性。

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