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Analysis of the Phylogenetic and Functional Dynamics of Microbial Communities in Metalliferous, Acid-Generating Mine Tailings Subject to a Phytostabilization Treatment

机译:进行植物稳定化处理的含金属,产酸尾矿中微生物群落的系统发生和功能动力学分析

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摘要

Extensive research conducted over the last decade has demonstrated the great potential of phytostabilization for the reclamation of abandoned mine tailing piles. The right combination of plant species and soil amendments can facilitate the growth of a permanent vegetative cover on the tailings that will help minimize the mobilization of metal-bearing particles by means of wind dispersion and water erosion. Despite previous research efforts, the diversity and potential role of microbial populations inhabiting the root zone of the plants on the stabilization of the metal(loid) contaminants remains mostly unresolved. The study presented in this dissertation represents one of the first comprehensive efforts aimed to understand the ecology and dynamics of microbial communities colonizing both bulk and rhizosphere tailings during phytostabilization as an initial step towards elucidating the role of microbes in the stabilization of metal(loid) contaminants during the remediation treatment. This study was divided into two main projects: (1) the first aimed to monitor the temporal variations in functional and taxonomic diversity of prokaryotic populations in acid-generating metalliferous mine tailings during phytostabilization to determine how they respond to and/or influence changes in environmental parameters and to identify key patterns in their composition that may serve as bioindicators of soil health and the success of the remediation treatment; and (2) the second aimed to expand our understanding of the dynamics of root-associated bacterial, fungal and archaeal communities during mine tailing phytostabilization and how the dynamic behavior of the communities correspond to the growth of plants, the addition of soil amendments, and fluctuations in environmental conditions. The results presented here demonstrate that different microbial groups respond differently to changes in environmental conditions during phytostabilization, suggesting that by monitoring the behavior of specific microbial groups in the systems (as bioindicators) we may be able to assess the effectiveness of the remediation treatment. Furthermore, the results from the taxonomic and functional analysis of the microbial communities served as the basis for the development of a model that explains the ecology and distribution of dominant microbial groups in the tailings that may significantly contribute to the oxidation of iron-sulfides, the production of acid mine drainage, and to facilitate plant establishment and survival during phytostabilization.
机译:在过去十年中进行的广泛研究表明,植物稳定化技术在废弃矿山尾矿堆填海中具有巨大的潜力。植物种类和土壤改良剂的正确组合可以促进尾矿上永久性植物覆盖物的生长,这将有助于通过风扩散和水蚀最小化含金属颗粒的动员。尽管有先前的研究工作,但居住在植物根部区域的微生物种群对金属(胶体)污染物稳定的多样性和潜在作用仍未得到解决。本论文提出的研究是旨在了解在植物稳定过程中定殖在块状和根际尾矿中的微生物群落的生态学和动力学的第一个综合性努力,这是阐明微生物在稳定金属(胶体)污染物中的作用的第一步在补救治疗期间。这项研究分为两个主要项目:(1)第一个项目旨在监测植物稳定过程中产酸金属矿山尾矿中原核生物的功能和分类多样性的时间变化,以确定它们如何响应和/或影响环境变化。参数并确定其组成中的关键模式,这些模式可以作为土壤健康和修复治疗成功的生物指标; (2)第二个目标是扩大我们对矿山尾矿植物稳定过程中与根相关的细菌,真菌和古细菌群落动态的了解,以及该群落的动态行为如何与植物生长,添加土壤改良剂相对应,以及环境条件的波动。此处显示的结果表明,不同的微生物组在植物稳定过程中对环境条件变化的反应不同,这表明通过监测系统中特定微生物组的行为(作为生物指示剂),我们可能能够评估修复治疗的有效性。此外,微生物群落的分类和功能分析结果为模型开发提供了基础,该模型解释了尾矿中主要微生物基团的生态学和分布,这些生态学和分布可能极大地促进了硫化铁的氧化。生产酸性矿山排水设备,并在植物稳定过程中促进植物的建立和生存。

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    Valentín-Vargas Alexis;

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  • 年度 2013
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