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首页> 外文期刊>Journal of soils & sediments >PAH biodegradation by telluric saprotrophic fungi isolated from aged PAH-contaminated soils in mineral medium and historically contaminated soil microcosms
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PAH biodegradation by telluric saprotrophic fungi isolated from aged PAH-contaminated soils in mineral medium and historically contaminated soil microcosms

机译:Pah Biodgradation通过矿物质培养基和历史污染的土壤微观患者从老年的PAH污染的土壤中分离出来的碲萎缩真菌

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PurposeRemediation of contaminated soils is of high relevance considering losses of this limited resource in most countries through erosion or through destruction for societal purposes. Most physicochemical remediation techniques lead to soil destruction avoiding reuse of the sites and loss of soil functions including ecological services like water retention/filtration, plant needs, carbon sequestration, or atmosphere restoration. This study aims to find out efficient telluric PAH-degrading fungi to both remediate soils and preserve their functioning.Materials and methodsFifty telluric saprotrophic fungi were thus isolated from different aged PAH-contaminated soils sampled from four brownfields in the North of France. Thirty of these isolates were screened in a mineral medium for their ability to degrade benzo[a]pyrene (BaP) used as a model of HMW PAH. After 9days of incubation, the remaining BaP was quantified through HPLC analysis. Then, a set of microcosms was performed with an aged PAH-contaminated non-sterile soil encompassing different approaches with bioaugmentation using mycelia of three strains pre-established on expanded clay particles and, for one of these strains, biostimulation strategies including nitrogen or nitrogen/phosphorous supplementations or aeration by stirring. After an incubation time of 30days, remaining PAH were quantified through GC-MS and evolution of fungal populations evaluated through qPCR.Results and discussionIsolated Penicillium canescens, Cladosporium cladosporioides, Fusarium solani, and Talaromyces helicus degraded more than 30% of the initial 500g of BaP after 9days of incubation. The three latest strains were thus inoculated in aged PAH-contaminated soil microcosms. After 30days, PAH quantitative analyses showed that the highest degradation was obtained by bioaugmentation with T. helicus (26% of the initial total PAH content: 321.7mgkg(-1)), which seems high considering an aged industrial contamination. Biostimulation approaches coupled to the inoculation of this strain did not improve the degradation. DNA quantification of the inoculated species confirmed their enrichment in the soil revealing the interest of the used inoculation strategy. We discuss bioaugmentation and biostimulation approaches in the case of the considered pollutants and soil.ConclusionsA strain identified as T. helicus appears interesting for its HMW PAH degradation capacities both in mineral medium with pure BaP and in industrial non-sterile soil microcosms contaminated with a hydrocarbon complex mixture. This study also confirms the efficiency of a well-studied BaP-degrading strain of F. solani. These results indicate the potentialities of the used bioaugmentation approach and underline the necessity of scale-up strategies to apply this kind of technique on site.
机译:污染的土壤的用途考虑到在大多数国家通过侵蚀或通过破坏社会目的,考虑到这笔有限资源的损失的高相关性。大多数物理化学修复技术导致土壤破坏避免重复使用场所和土壤功能的丧失,包括水保留/过滤,植物需求,碳封存或大气复原等生态服务。本研究旨在查找有效的碲化菌PAH降解真菌,并保留其功能。从法国北部的四个棕色地区采样,从不同年龄的PAH污染的土壤中分离出来的碲化菌菌株,从而从法国北部的四个棕片中取样的不同年龄PAH污染的土壤中分离出来的功能。将这些分离物中的三十次筛选在矿物质培养基中,以使用作HMW PAH的模型来降解苯并[a]芘(BAP)的能力。在9天孵育后,通过HPLC分析量化剩余的烘烤。然后,通过使用在膨胀的粘土颗粒上预先建立的三种菌株的菌丝体的菌丝菌丝体进行不同方法进行一组微观粒子,并且对于这些菌株中的一种,其中包括氮气或氮气的生物刺激策略/通过搅拌来补充或曝气。在孵育时间30天后,通过GC-MS量化剩余的PAH和通过QPCR评估的真菌群体的演变。结果和兼职的小植物,囊孢子孢子孢子素,镰刀菌和塔罗敏螺旋降解了初始500g的30%以上经过第9天的孵化后。因此,三种最新的菌株接种在老年的PAH污染的土壤微科学系统中。在30天后,PAH定量分析表明,通过用T. helicus的生物沉积获得最高的降解(初始PAH含量的26%:321.7mgkg(-1)),考虑到老年的工业污染。与接种该菌株接种的生物刺激方法没有改善降解。接种物种的DNA定量证实了它们在土壤中的富集,揭示了使用过使用的接种策略的兴趣。我们讨论了在被定任污染物和土壤的情况下讨论生物灭绝和生物刺激方法。与其HMW PAH降解能力均有关矿物培养基的矿培养基和含有烃的工业非无菌土壤微观的矿物培养基的菌株似乎有趣复杂的混合物。该研究还证实了索尔甘肉的富集的Bap降解菌株的效率。这些结果表明,使用的生物沉积方法的潜力,并强调了扩展策略的必要性,以在现场应用这种技术。

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