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Spatial Distribution and Molecular Diversity of Archaeal Communities in the Extreme Hypersaline Meromictic Brancoveanu Lake (Transylvanian Basin, Romania)

机译:极端纯净梅兰布兰诺伊湖(Transylvanian Basin,Romania)的古群落的空间分布与分子多样性

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摘要

Dating from the Middle Miocene, the massive halite deposits lying beneath the Transylvanian Basin (Central Romania) have been valuable mineral resources quarried for millennia. Among the numerous hypersaline pit lakes that resulted from this mining, Brancoveanu Lake is unique by its extreme salinity. Assessment of physicochemical variables, water chemistry and trophic status indicated that Brancoveanu Lake is a permanently stratified, pH-neutral, NaCl-rich and eutrophied system. We investigated the abundance, molecular diversity and vertical distribution of archaeal community by culture-independent approaches. Additionally, the most relevant environmental parameters shaping the archaeal community composition were evaluated by statistical methods. Archaea appeared to largely outnumber Bacteria; altogether the great prevalence of Halobacteriaceae-related sequences could imply a major contribution of this group to the biogeochemical carbon turnover. The fairly distinct composition of archaeal communities reflects the lake's physicochemical stratification. Among the limnological factors, salinity and oxygen showed a significant impact on determining the composition and structure of archaeal assemblages. Furthermore, Brancoveanu Lake might harbor novel microorganisms such as members of the recently described phylum Nanohaloarchaea. Overall, this study reported the occurrence of halophilic Archaea in a little explored hydrogeochemical system and provided a better insight into geomicrobiology of meromictic hypersaline pit lakes.
机译:距离中间新生的历史,躺在特兰西瓦盆地(中罗马尼亚)下方的大型宿舍沉积物一直是千禧年的珍贵矿产资源。由于这种采矿所产生的许多脾坑湖中,Brancoveanu Lake是其极端盐度的独特之处。物理化学变量评估,水化学和营养状况表明,Brancoveanu Lake是永久分层的,pH - 中性,NaCl-富含和富营养的系统。我们通过独立于文化的方法调查了古群落的丰富,分子多样性和垂直分布。另外,通过统计方法评估塑形古群落组成的最相关的环境参数。古代症似乎在很大程度上超过了细菌;完全完全嗜血膜相关序列的普遍普遍可能意味着该组对生物地球化学碳转运的主​​要贡献。古代社区的相当鲜明的构成反映了湖泊的物理化学分层。在Limnological因子中,盐度和氧气对确定古粒组合物的组成和结构表示显着影响。此外,Brancoveanu Lake可能会遭受新的微生物,例如最近描述的纳米罗菌菌的成员。总体而言,这项研究报告说,嗜嗜盐古代的嗜盐古代化学系统的发生,并提供了更好地洞察Meromictic Hypersaline Pit Lakes的地质生物学。

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