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Tracking the prokaryotic diversity in acid mine drainage-contaminated environments: A review of molecular methods

机译:跟踪酸性矿山排水污染环境中的原核生物多样性:分子方法综述

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摘要

The negative impact of acid mine drainage (AMD) on public and environmental health by degrading the aquatic and terrestrial ecosystem with a drastic decrease in pH and elevated levels of toxic heavy metals, metalloids and radionuclides necessitate the development of environmentally sustainable technologies to remediate AMD. The development of appropriate strategies for controlling and/or abating the detrimental effects of AMD in natural and mining environments primarily depends on the diversity and compositions of the local acidophilic microbial communities (those which can grow at pH 6 3) which catalyze the reactions of AMD by production of sulfuric acid and ferric iron. Robust method(s) to track the AMDpromoting microbial communities will not only provide information about their ecophysiological role in extreme environments but also help sustain the reliability of remediation technologies. This paper provides an overview on the phylogenetic diversity of prokaryotes present in AMD-impacted environments, and different molecular methods that have been used to track the diversity of these acidophiles. Additionally, the high-throughput methods (metagenomics, metaproteomics and microarrays) that link prokaryotic phylogeny to their function in AMD systems are also discussed.
机译:酸性矿山排水(AMD)通过破坏水生和陆地生态系统,pH值急剧下降以及有毒重金属,准金属和放射性核素水平升高而对公共和环境健康产生负面影响,因此需要开发环境可持续技术来补救AMD。在自然和采矿环境中控制和/或减轻AMD有害影响的适当策略的开发主要取决于催化AMD反应的局部嗜酸微生物群落(可以在pH 6 3处生长的微生物)的多样性和组成。通过生产硫酸和三价铁。跟踪AMD促进微生物群落的健壮方法不仅可以提供有关其在极端环境中的生态生理作用的信息,而且还有助于维持补救技术的可靠性。本文概述了AMD感染环境中存在的原核生物的系统发育多样性,以及用于追踪这些嗜酸菌多样性的不同分子方法。此外,还讨论了将原核系统发育与其功能联系在一起的高通量方法(基因组学,元蛋白质组学和微阵列)。

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