首页> 外文期刊>Environmental Science & Technology >Culture-Independent Analysis of Linuron-Mineralizing Microbiota and Functions in on-Farm Biopurification Systems via DNA-Stable Isotope Probing: Comparison with Enrichment Culture
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Culture-Independent Analysis of Linuron-Mineralizing Microbiota and Functions in on-Farm Biopurification Systems via DNA-Stable Isotope Probing: Comparison with Enrichment Culture

机译:通过DNA稳定的同位素探测对林核 - 矿化微生物的培养基与农场生物熔融系统中的功能分析:与富集培养的比较

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摘要

Our understanding of the microorganisms involved in in situ biodegradation of xenobiotics, like pesticides, in natural and engineered environments is poor. On-farm biopurification systems (BPSs) treat farm-produced pesticide-contaminated wastewater to reduce surface water pollution. BPSs are a labor and cost-efficient technology but are still mainly operated as black box systems. We used DNA-stable isotope probing (DNA-SIP) and classical enrichment to be informed about the organisms responsible for in situ degradation of the phenylurea herbicide linuron in a BPS matrix. DNA-SIP identified Ramlibacter, Variovorax, and an unknown Comamonadaceae genus as the dominant linuron assimilators. While linuron-degrading Variovorax strains have been isolated repeatedly, Ramlibacter has never been associated before with linuron degradation. Genes and mobile genetic elements (MGEs) previously linked to linuron catabolism were enriched in the heavy DNA-SIP fractions, suggesting their involvement in in situ linuron assimilation. BPS material free cultivation of linuron degraders from the same BPS matrix resulted in a community dominated by Variovorax, while Ramlibacter was not observed. Our study provides evidence for the role of Variovorax in in situ linuron biodegradation in a BPS, alongside other organisms like Ramlibacter, and further shows that cultivation results in a biased representation of the in situ linuron-assimilating bacterial populations.
机译:我们对自然和工程环境中的杀虫剂如杀虫剂的原位生物降解的微生物的理解是差的。农场生物熔融系统(BPS)治疗农用生产的农药污染的废水,以减少地表水污染。 BPS是一种劳动力和成本效益的技术,但仍然主要作为黑匣子系统运行。我们使用DNA稳定的同位素探测(DNA-SIP)和经典富集,以了解对BPS基质中苯脲除草剂Linuron的原位降解的生物体。 DNA-SIP鉴定ramlibacter,Variovorax和未知的Comamonadaceae属,作为主导的林氏同化器。虽然Linuron降解的Variovorax菌株反复分离,但在林氏菌之前从未与Linuron降解以前从未相关的ramlibacter。先前与林呋喃分解代谢相关的基因和移动遗传元素(升降机)在重型DNA-SIP级分中富集,表明其参与原位林氏同化。 BPS材料自由培养来自相同的BPS矩阵的林氏血液溶剂导致由Variovorax主导的群体,而未观察到ramLibacter。我们的研究提供了Variovorax在BPS中原位Linuron生物降解的作用的证据,与ramlibacter这样的其他生物一起,并且进一步表明培养导致原位林核和同化细菌群体的偏置表示。

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  • 来源
    《Environmental Science & Technology》 |2020年第15期|9387-9397|共11页
  • 作者单位

    Division of Soil and Water Management KU Leuven B-3001 Heverlee-Leuven Belgium;

    Division of Soil and Water Management KU Leuven B-3001 Heverlee-Leuven Belgium;

    Thuenen Institut fuer Biodiversitaet 38116 Braunschweig Germany;

    Molecular Design and Synthesis KU Leuven B-3001 Heverlee-Leuven Belgium;

    Department of Plant Biotechnology and Bioinfonnatics Ghent University B-9000 Gent Belgium;

    Centre of Microbial and Plant Genetics KU Leuven B-3001 Heverlee-Leuven Belgium;

    Molecular Design and Synthesis KU Leuven B-3001 Heverlee-Leuven Belgium;

    Thuenen Institut fuer Biodiversitaet 38116 Braunschweig Germany;

    Division of Soil and Water Management KU Leuven B-3001 Heverlee-Leuven Belgium;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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