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A Metagenomics Transect into the Deepest Point of the Baltic Sea Reveals Clear Stratification of Microbial Functional Capacities

机译:荟萃到波罗的海最深处的超基因组学揭示了微生物功能能力的清晰分层

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摘要

The Baltic Sea is characterized by hyposaline surface waters, hypoxic and anoxic deep waters and sediments. These conditions, which in turn lead to a steep oxygen gradient, are particularly evident at Landsort Deep in the Baltic Proper. Given these substantial differences in environmental parameters at Landsort Deep, we performed a metagenomic census spanning surface to sediment to establish whether the microbial communities at this site are as stratified as the physical environment. We report strong stratification across a depth transect for both functional capacity and taxonomic affiliation, with functional capacity corresponding most closely to key environmental parameters of oxygen, salinity and temperature. We report similarities in functional capacity between the hypoxic community and hadal zone communities, underscoring the substantial degree of eutrophication in the Baltic Proper. Reconstruction of the nitrogen cycle at Landsort deep shows potential for syntrophy between archaeal ammonium oxidizers and bacterial denitrification at anoxic depths, while anaerobic ammonium oxidation genes are absent, despite substantial ammonium levels below the chemocline. Our census also reveals enrichment in genetic prerequisites for a copiotrophic lifestyle and resistance mechanisms reflecting adaptation to prevalent eutrophic conditions and the accumulation of environmental pollutants resulting from ongoing anthropogenic pressures in the Baltic Sea.
机译:波罗的海的特征是次盐度地表水,缺氧和缺氧的深水和沉积物。这些条件反过来导致陡峭的氧气梯度,在波罗的海适当地区的Landsort Deep尤其明显。鉴于Landsort Deep的环境参数存在这些实质性差异,我们进行了从地表到沉积物的宏基因组普查,以确定该地点的微生物群落是否与自然环境一样分层。我们报告了功能能力和生物分类隶属关系在整个深度断面的强烈分层,其中功能能力最接近于氧气,盐度和温度等关键环境参数。我们报告了低氧社区和哈达尔区社区之间的功能能力上的相似性,强调了波罗的海的富营养化程度。 Landsort深层氮循环的重建表明,在缺氧深度,古细菌铵氧化剂和细菌反硝化之间有可能发生同质化,而缺氧的氨氧化基因却不存在,尽管氨氮水平低于趋化因子。我们的人口普查还揭示了食营养型生活方式的遗传先决条件的丰富和反映出对普遍的富营养化条件的适应以及波罗的海持续的人为压力导致的环境污染物积累的抗药性机制。

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