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Application Of Molecular Fingerprinting For Analysis Of A Pah-contaminated Soil Microbiota Growing In The Presence Of Complex Pahs

机译:分子指纹技术在复杂Pahs存在下生长受Pah污染的土壤微生物群落分析中的应用

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摘要

Polycyclic aromatic hydrocarbons (PAHs) constitute a group of priority pollutants which are present at high concentrations in the soils of many industrial contaminated sites. Pollution by these compounds may stimulate growth of organisms able to live in these environments causing changes in the structure of the microbial community due to some cooperative process of metabolization of toxic compounds. A long-term PAH-contaminated soil was stored for several years and used to analyze the native microbiota regarding their ability to grow on pyrene, benzo[a]pyrene, as well as in mixtures of LMW-and HMW-PAHs. Molecular profiles of the microbial community was assessed by PCR-DGGE of 16S rRNA gene, and the number of bands observed in DGGE analyses was interpreted as dominant microbial members into the bacterial community. Results of PAH-contaminated soil microorganisms showed different profiles in the degradative dynamics when some nutrients were added. Predominant species may play a significative role while growing and surviving on PAHs, and some other metabolically active species have emerged to interact themselves in a cooperative catabolism of PAHs.
机译:多环芳烃(PAH)构成了一组优先污染物,这些污染物以高浓度存在于许多工业污染场所的土壤中。这些化合物的污染可能会刺激能够在这些环境中生活的生物体的生长,这是由于某些有毒化合物代谢的协同过程而导致微生物群落结构发生变化。长期被PAH污染的土壤可以保存数年,并用于分析原生微生物在pyr,苯并[a] re以及LMW-和HMW-PAH混合物中的生长能力。通过16S rRNA基因的PCR-DGGE评估了微生物群落的分子谱,并且在DGGE分析中观察到的条带数量被解释为细菌群落的主要微生物成员。添加某些养分后,被PAH污染的土壤微生物的降解动力学表现出不同的曲线。优势物种可能在PAHs上生长和存活时起重要作用,并且已经出现了一些其他代谢活性物种在PAHs的协同分解代谢中相互作用。

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