The perennially ice-covered Lake Enigma, Antarctica supports unique microbial communities

IF 8.1 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES Communications Earth & Environment Pub Date : 2024-12-03 DOI:10.1038/s43247-024-01842-5
Francesco Smedile, Violetta La Cono, Stefano Urbini, Giovanni Benedetti, Gina La Spada, Francesca Crisafi, Maurizio Azzaro, Nunziatina Porcino, Stefano Fazi, Stefano Amalfitano, Franco Tassi, Orlando Vaselli, Stefania Venturi, Michael T. Madigan, John E. Hallsworth, Michail M. Yakimov
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Abstract

Northern Foothills of Victoria Land, Antarctica contains numerous hydrological formations, ranging from small surface streams and ponds fed by glacial or snow meltwater to permafrost lakes containing briny pockets. Here we describe the discovery of a massive body of unfrozen stratified oligotrophic water in Lake Enigma, a permanently ice-covered lake previously thought to be frozen from top to bottom. A remarkable feature of the Lake Enigma microbial ecosystem is the presence, and sometimes even dominance, of ultrasmall bacteria belonging to the superphylum Patescibacteria, a group apparently absent from Antarctic lakes in the well-studied McMurdo Dry Valleys. Cyanobacteria are virtually absent from Lake Enigma ice and water column although they are well represented in its extensive and diverse benthic microbial mats. Collectively, these features reveal a new complexity in Antarctic lake food webs and demonstrate that in addition to phototrophic and simple chemotrophic metabolisms, both symbiotic and predatory lifestyles may exist. Unfrozen water in the perennially ice-covered Lake Enigma, Antarctica supports microbial communities distinct from those in other Antarctic lakes according to analyses of the lake’s physical structure, geochemistry, hydrological history, and microbiota.

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常年被冰雪覆盖的南极恩尼格玛湖支持着独特的微生物群落
南极洲维多利亚地的北部山麓有许多水文构造,从冰川或雪融水形成的小型地表溪流和池塘到含有咸水袋的永久冻土湖泊。在这里,我们描述了在恩尼格玛湖(Lake Enigma)发现的大量未冻结的分层寡营养水,这是一个永久被冰覆盖的湖泊,以前人们认为它从头到尾都是冻结的。恩尼格玛湖微生物生态系统的一个显著特征是存在,有时甚至占主导地位,属于超门的超小细菌,在麦克默多干谷的南极湖泊中显然没有这种细菌。蓝藻几乎不存在于恩尼格玛湖的冰和水柱中,尽管它们在其广泛而多样的底栖微生物席中有很好的代表。总的来说,这些特征揭示了南极湖泊食物网的一种新的复杂性,并表明除了光养和简单的化养代谢外,共生和掠食性生活方式可能同时存在。根据对南极恩尼格玛湖的物理结构、地球化学、水文历史和微生物群的分析,终年被冰覆盖的南极恩尼格玛湖的不冻水支持着与其他南极湖泊不同的微生物群落。
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来源期刊
Communications Earth & Environment
Communications Earth & Environment Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
8.60
自引率
2.50%
发文量
269
审稿时长
26 weeks
期刊介绍: Communications Earth & Environment is an open access journal from Nature Portfolio publishing high-quality research, reviews and commentary in all areas of the Earth, environmental and planetary sciences. Research papers published by the journal represent significant advances that bring new insight to a specialized area in Earth science, planetary science or environmental science. Communications Earth & Environment has a 2-year impact factor of 7.9 (2022 Journal Citation Reports®). Articles published in the journal in 2022 were downloaded 1,412,858 times. Median time from submission to the first editorial decision is 8 days.
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