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Microbial communities of aquatic environments on Heard Island characterized by pyrotag sequencing and environmental data

机译:希德岛水生环境中的微生物群落以焦磷酸测序和环境数据为特征

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摘要

Heard Island in the Southern Ocean is a biological hotspot that is suffering the effects of climate change. Significant glacier retreat has generated proglacial lagoons, some of which are open to the ocean. We used pyrotag sequencing of SSU rRNA genes and environmental data to characterize microorganisms from two pools adjacent to animal breeding areas, two glacial lagoons and Atlas Cove (marine site). The more abundant taxa included Actinobacteria, Bacteroidetes and Proteobacteria, ciliates and picoflagellates (e.g. Micromonas), and relatively few Archaea. Seal Pool, which is rich in organic matter, was characterized by a heterotrophic degradative community, while the less eutrophic Atlas Pool had more eucaryotic primary producers. Brown Lagoon, with the lowest nutrient levels, had Eucarya and Bacteria predicted to be oligotrophs, possess small cell sizes, and have the ability to metabolize organic matter. The marine influence on Winston Lagoon was evident by its salinity and the abundance of marine-like Gammaproteobacteria, while also lacking typical marine eucaryotes indicating the system was still functioning as a distinct niche. This is the first microbiology study of Heard Island and revealed that communities are distinct at each location and heavily influenced by local environmental factors.
机译:南大洋的赫德岛是遭受气候变化影响的生物热点。大量冰川退缩形成了长廊泻湖,其中一些向海洋开放。我们使用SSU rRNA基因的热标记测序和环境数据来表征来自与动物繁殖区相邻的两个库,两个冰川泻湖和阿特拉斯湾(海洋站点)的微生物。较为丰富的分类单元包括放线菌,拟杆菌和变形杆菌,纤毛和皮鞭毛(例如微单胞菌),古生菌相对较少。富含有机质的海豹潭(Seal Pool)具有异养降解群落特征,而富营养度较低的阿特拉斯(Atlas)池则有更多的真核初级生产者。营养盐含量最低的棕色泻湖中的Eucarya和Bacteria被预测为寡营养菌,细胞大小较小,并具有代谢有机物的能力。海洋对温斯顿泻湖的影响可以通过其盐度和丰富的海洋类丙种细菌来证明,同时也缺乏典型的海洋真核生物,表明该系统仍在发挥独特的作用。这是Heard Island的第一项微生物学研究,揭示了每个地区的社区都不同,并且受到当地环境因素的严重影响。

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