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Novel and Unexpected Microbial Diversity in Acid Mine Drainage in Svalbard (78° N) Revealed by Culture-Independent Approaches

机译:新型和意料之外的微生物多样性在斯瓦尔巴群岛(78°N)的酸性矿山中通过与文化无关的方法揭示

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摘要

Svalbard, situated in the high Arctic, is an important past and present coal mining area. Dozens of abandoned waste rock piles can be found in the proximity of Longyearbyen. This environment offers a unique opportunity for studying the biological control over the weathering of sulphide rocks at low temperatures. Although the extension and impact of acid mine drainage (AMD) in this area is known, the native microbial communities involved in this process are still scarcely studied and uncharacterized. Several abandoned mining areas were explored in the search for active AMD and a culture-independent approach was applied with samples from two different runoffs for the identification and quantification of the native microbial communities. The results obtained revealed two distinct microbial communities. One of the runoffs was more extreme with regards to pH and higher concentration of soluble iron and heavy metals. These conditions favored the development of algal-dominated microbial mats. Typical AMD microorganisms related to known iron-oxidizing bacteria (Acidithiobacillus ferrivorans, Acidobacteria and Actinobacteria) dominated the bacterial community although some unexpected populations related to Chloroflexi were also significant. No microbial mats were found in the second area. The geochemistry here showed less extreme drainage, most likely in direct contact with the ore under the waste pile. Large deposits of secondary minerals were found and the presence of iron stalks was revealed by microscopy analysis. Although typical AMD microorganisms were also detected here, the microbial community was dominated by other populations, some of them new to this type of system (Saccharibacteria, Gallionellaceae). These were absent or lowered in numbers the farther from the spring source and they could represent native populations involved in the oxidation of sulphide rocks within the waste rock pile. This environment appears thus as a highly interesting field of potential novelty in terms of both phylogenetic/taxonomic and functional diversity.
机译:斯瓦尔巴群岛位于北极高海拔地区,是过去和现在的重要煤矿区。在朗伊尔城附近可以找到数十个废弃的废石堆。这种环境为研究低温下硫化岩石风化的生物控制提供了独特的机会。尽管酸性矿山排水系统(AMD)在该地区的扩展和影响是已知的,但仍很少研究和鉴定不参与该过程的原生微生物群落。在寻找活跃的AMD的过程中探索了几个废弃的矿区,并采用了一种与文化无关的方法,对来自两个不同径流的样品进行了鉴定和量化。获得的结果揭示了两个不同的微生物群落。关于pH以及可溶性铁和重金属的更高浓度,径流之一更为极端。这些条件有利于以藻类为主的微生物垫的发展。与已知的铁氧化细菌相关的典型AMD微生物(费氏嗜酸硫杆菌,嗜酸细菌和放线菌)占细菌群落的主导地位,尽管与拟绿弯曲杆菌有关的一些意想不到的种群也很重要。在第二区域没有发现微生物垫。这里的地球化学显示出较少的极端排水,最有可能与废物堆下面的矿石直接接触。发现大量次生矿物质,并通过显微镜分析揭示了铁杆的存在。尽管在此还检测到了典型的AMD微生物,但微生物群落还是由其他种群控制的,其中有些是这种系统的新成员(糖细菌,鸡翅菌科)。这些在远离泉源的地方不存在或数量减少,它们可以代表参与废石堆中硫化物岩石氧化的原生种群。因此,就系统发育/分类学和功能多样性而言,这种环境似乎是一个非常有趣的潜在新颖领域。

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