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Composition Diversity and Stability of Microbial Assemblages in Seasonal Lake Ice Miquelon Lake Central Alberta

机译:艾伯塔省中部密克隆湖季节性冰湖中微生物组合的组成多样性和稳定性

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摘要

The most familiar icy environments, seasonal lake and stream ice, have received little microbiological study. Bacteria and Eukarya dominated the microbial assemblage within the seasonal ice of Miquelon Lake, a shallow saline lake in Alberta, Canada. The bacterial assemblages were moderately diverse and did not vary with either ice depth or time. The closest relatives of the bacterial sequences from the ice included Actinobacteria, Bacteroidetes, Proteobacteria, Verrucomicrobia, and Cyanobacteria. The eukaryotic assemblages were less conserved and had very low diversity. Green algae relatives dominated the eukaryotic gene sequences; however, a copepod and cercozoan were also identified, possibly indicating the presence of complete microbial loop. The persistence of a chlorophyll a peak at 25–30 cm below the ice surface, despite ice migration and brine flushing, indicated possible biological activity within the ice. This is the first study of the composition, diversity, and stability of seasonal lake ice.
机译:最熟悉的冰冷环境,季节性的湖泊和溪流冰,几乎没有进行微生物学研究。在加拿大艾伯塔省的一个浅盐水湖Miquelon湖的季节性冰中,细菌和Eukarya占主导地位。细菌组合适度多样,并且不随冰深或时间而变化。来自冰的细菌序列的最接近的亲属包括放线菌,拟杆菌,变形杆菌,疣状微生物和蓝细菌。真核生物的保守性较低,多样性很低。绿藻亲属在真核基因序列中占主导地位。然而,还鉴定了a足类和头足类动物,可能表明存在完整的微生物环。尽管有冰迁移和盐水冲洗,但叶绿素在冰面以下25–30 cm处的持久性峰表明,冰中可能存在生物活性。这是对季节性湖冰的组成,多样性和稳定性的首次研究。

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