VTT Technical Research Centre of Finland, 02044 VTT, Finland.
Geological Survey of Finland (GTK), Betonimiehenkuja 4, 02151 Espoo, Finland.
FEMS Microbiol Ecol. 2018 Aug 1;94(8). doi: 10.1093/femsec/fiy116.
The diversity and metabolic functions of deep subsurface ecosystems remain relatively unexplored. Microbial communities in previously studied deep subsurface sites of the Fennoscandian Shield are distinctive to each site. Thus, we hypothesized that the microbial communities of the deep Archaean bedrock fracture aquifer in Romuvaara, northern Finland, differ both in community composition and metabolic functionality from the other sites in the Fennoscandian Shield. We characterized the composition, functionality and substrate preferences of the microbial communities at different depths in a 600 m deep borehole. In contrast to other Fennoscandian deep biosphere communities studied to date, iron-oxidizing Gallionella dominated the bacterial communities, while methanogenic and ammonia-oxidizing archaea were the most prominent archaea, and a diverse fungal community was also detected. Potential for methane cycling and sulfate and nitrate reduction was confirmed by detection of the functional genes of these metabolic pathways. Organotrophs were less abundant, although carbohydrates were the most preferred of the tested substrates. The microbial communities shared features with those detected from other deep groundwaters with similar geochemistry, but the majority of taxa distinctive to Romuvaara are different from the taxa previously detected in saline deep groundwater in the Fennoscandian Shield, most likely because of the differences in water chemistry.
深部地下生态系统的多样性和代谢功能仍相对未知。先前研究过的芬诺斯堪的亚盾区深部地下场所的微生物群落,每个地点都有其独特之处。因此,我们假设芬兰北部罗穆瓦拉(Romuvaara)太古生岩断裂含水层的深部微生物群落,无论是在群落组成还是代谢功能上,都与芬诺斯堪的亚盾区的其他地点不同。我们在一个 600 米深的钻孔中不同深度处对微生物群落的组成、功能和基质偏好进行了表征。与迄今为止研究过的其他芬诺斯堪的亚深层生物圈群落相比,铁氧化的Gallionella 主导着细菌群落,而产甲烷菌和氨氧化古菌是最突出的古菌,还检测到了多样化的真菌群落。通过检测这些代谢途径的功能基因,证实了甲烷循环以及硫酸盐和硝酸盐还原的潜力。尽管碳水化合物是测试基质中最受欢迎的,但有机营养体的丰度较低。微生物群落与具有相似地球化学特征的其他深部地下水检测到的群落具有相似的特征,但罗穆瓦拉特有的大多数分类群与芬诺斯堪的亚盾区盐度深部地下水以前检测到的分类群不同,这很可能是由于水化学的差异。