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Microbial Communities Associated with Sustained Anaerobic Reductive Dechlorination of α-,β-, γ-, and -Hexachlorocyclohexane Isomers to Monochlorobenzene and Benzene

机译:α-,β-,γ-和-六氯环己烷异构体持续厌氧还原脱氯为一氯苯和苯的微生物群落

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摘要

Intensive historical and worldwide use of pesticide formulations containing hexachlorocyclohexane (HCH) has led to widespread contamination. We derived four anaerobic enrichment cultures from HCH-contaminated soil capable of sustainably dechlorinating each of α-,β-, γ-, and δ-HCH isomers stoichio-metrically to benzene and monochlorobenzene (MCB). For each isomer, the dechlorination rates, inferred from production rates of the dechlorinated products, MCB and benzene, increased progressively from <3 to ~12 /μM/day over 2 years. The molar ratio of benzene to MCB produced was a function of the substrate isomer and ranged from β (0.77 ± 0.15), α (0.55 ± 0.09), γ (0.13 ± 0.02), to 8 (0.06 ± 0.02) in accordance with pathway predictions based on prevalence of antiperiplanar geometry. Data from 16S rRNA gene amplicon sequencing and quantitative PCR revealed significant increases in the absolute abundances of Pelobacter and Dehalobacter, most notably in the α-HCH and δ-HCH cultures. Cultivation with a different HCH isomer resulted in distinct bacterial communities, but similar archaeal communities. This study provides the first direct comparison of shifts in anaerobic microbial communities induced by the dechlorination of distinct HCH isomers. It also uncovers candidate microorganisms responsible for the dechlorination of α-,β-, γ-, and δ-HCH, a key step toward better understanding and monitoring of natural attenuation processes and improving bioremediation technologies for HCH-contaminated sites.
机译:在历史上和世界范围内,广泛使用含有六氯环己烷(HCH)的农药制剂,导致了广泛的污染。我们从HCH污染的土壤中获得了四种厌氧富集培养物,它们能够以化学计量方式将α-,β-,γ-和δ-HCH异构体持续脱氯成苯和一氯苯(MCB)。对于每种异构体,从脱氯产物,MCB和苯的生产率推算出的脱氯率在2年中从<3 /〜M / d逐渐增加。苯与MCB的摩尔比是底物异构体的函数,根据途径,其范围为β(0.77±0.15),α(0.55±0.09),γ(0.13±0.02)至8(0.06±0.02)基于反平面几何的普遍性的预测。来自16S rRNA基因扩增子测序和定量PCR的数据显示,Pelobacter和Dehalobacter的绝对丰度显着增加,尤其是在α-HCH和δ-HCH培养物中。使用不同的六氯环己烷异构体进行耕种会产生不同的细菌群落,但会产生类似的古细菌群落。这项研究提供了第一个直接比较由独特的六氯环己烷异构体脱氯引起的厌氧微生物群落变化的方法。它还发现了导致α-,β-,γ-和δ-HCH脱氯的候选微生物,这是通向更好地了解和监测自然减毒过程并改善HCH污染场所生物修复技术的关键一步。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|255-265|共11页
  • 作者

  • 作者单位

    Key Laboratory of Surficial Geochemistry Ministry of Education School of Earth Sciences and Engineering Nanjing University Nanjing 210023 China Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto MSS 3E5 Canada Department of Microbiology Key Lab of Microbiology for Agricultural Environment Ministry of Agriculture College of Life Sciences Nanjing Agricultural University Nanjing 210095 China;

    Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto MSS 3E5 Canada;

    Key Laboratory of Surficial Geochemistry Ministry of Education School of Earth Sciences and Engineering Nanjing University Nanjing 210023 China Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto MSS 3E5 Canada Institute of Soil and Water Resources and Environmental Science Zhejiang University Hangzhou 310058 China;

    Key Laboratory of Surficial Geochemistry Ministry of Education School of Earth Sciences and Engineering Nanjing University Nanjing 210023 China;

    Laboratory COVACHIMM2E EA 3592 Universite des Antilles Pointe a Pitre 97157 Guadeloupe French West-Indies France;

    Department of Chemical Engineering and Applied Chemistry University of Toronto Toronto MSS 3E5 Canada Laboratory of Biomaterial and Tissue Engineering Federal University of Sao Paulo 136 Silvajardim Street Santos 11015-020 Sao Paulo Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 05:20:36

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