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Microbial stratification in low pH oxic and suboxic macroscopic growths along an acid mine drainage

机译:酸性矿山排水沿低pH值有氧和亚缺氧宏观生长中的微生物分层

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摘要

Macroscopic growths at geographically separated acid mine drainages (AMDs) exhibit distinct populations. Yet, local heterogeneities are poorly understood. To gain novel mechanistic insights into this, we used OMICs tools to profile microbial populations coexisting in a single pyrite gallery AMD (pH ∼2) in three distinct compartments: two from a stratified streamer (uppermost oxic and lowermost anoxic sediment-attached strata) and one from a submerged anoxic non-stratified mat biofilm. The communities colonising pyrite and those in the mature formations appear to be populated by the greatest diversity of bacteria and archaea (including ‘ARMAN' (archaeal Richmond Mine acidophilic nano-organisms)-related), as compared with the known AMD, with ∼44.9% unclassified sequences. We propose that the thick polymeric matrix may provide a safety shield against the prevailing extreme condition and also a massive carbon source, enabling non-typical acidophiles to develop more easily. Only 1 of 39 species were shared, suggesting a high metabolic heterogeneity in local microenvironments, defined by the O2 concentration, spatial location and biofilm architecture. The suboxic mats, compositionally most similar to each other, are more diverse and active for S, CO2, CH4, fatty acid and lipopolysaccharide metabolism. The oxic stratum of the streamer, displaying a higher diversity of the so-called ‘ARMAN'-related Euryarchaeota, shows a higher expression level of proteins involved in signal transduction, cell growth and N, H2, Fe, aromatic amino acids, sphingolipid and peptidoglycan metabolism. Our study is the first to highlight profound taxonomic and functional shifts in single AMD formations, as well as new microbial species and the importance of H2 in acidic suboxic macroscopic growths.
机译:地理上分开的酸性矿山排水系统(AMDs)的宏观生长表现出不同的种群。但是,对本地异质性的了解很少。为了对此获得新颖的力学见解,我们使用OMICs工具在三个不同的隔室中对单个黄铁矿画廊AMD(pH 〜2)中共存的微生物种群进行了分析:两个来自分层流光(最高的含氧和最低的缺氧附有沉积物的地层)和一种来自浸没的缺氧非分层垫生物膜。与已知的AMD相比,定居于黄铁矿和成熟地层中的群落似乎是由细菌和古细菌(包括“ ARMAN”(古细菌列治文矿嗜酸性纳米生物)相关)组成的最大多样性所组成的。 %未分类序列。我们建议,较厚的聚合物基体可以为当前的极端条件提供安全防护,并且还可以提供大量的碳源,从而使非典型的嗜酸剂更容易发展。 39个物种中只有1个被共享,这表明在局部微环境中代谢异质性很高,这由O2浓度,空间位置和生物膜结构决定。亚氧垫在成分上最相似,它们对于S,CO2,CH4,脂肪酸和脂多糖的代谢更具多样性和活性。拖缆的含氧层显示出较高的所谓“ ARMAN”相关的Euryarchaeota多样性,显示了信号转导,细胞生长以及N,H2,Fe,芳香族氨基酸,鞘脂和肽聚糖代谢。我们的研究首次强调了单一AMD形成中的重大分类和功能变化,以及新的微生物种类以及H2在酸性亚氧宏观生长中的重要性。

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