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南极盐锥:微生物生命的绿洲?以博尔德黏土冰川(维多利亚地北部)为例。

Antarctic Salt-Cones: An Oasis of Microbial Life? The Example of Boulder Clay Glacier (Northern Victoria Land).

作者信息

Azzaro Maurizio, Papale Maria, Rizzo Carmen, Forte Emanuele, Lenaz Davide, Guglielmin Mauro, Lo Giudice Angelina

机构信息

Institute of Polar Sciences, National Research Council (CNR-ISP), 98122 Messina, Italy.

Stazione Zoologica "Anton Dohrn", Marine Biotechnology Department, Sicily Marine Centre, Villa Pace, 98168 Messina, Italy.

出版信息

Microorganisms. 2022 Aug 30;10(9):1753. doi: 10.3390/microorganisms10091753.

Abstract

The evaporation of a localized, highly saline water body of the Boulder Clay debris-covered glacier, in the Northern Victoria Land, probably generated the accumulation of mirabilite (NaSO × 10HO) and thenardite (NaSO) in a glacier salt-cone. Such an extremely cold and salty environment resembles the conditions on Mars, so it can be considered a terrestrial analog. The study was aimed at gaining a first glimpse at the prokaryotic community associated with Antarctic mirabilite and thenardite minerals and also to find clues about the origin of the salts. For this purpose, samples were analyzed by a next generation approach to investigate the prokaryotic (Bacteria and Archaea) diversity. Phylogenetic analysis allowed the identification of , , , and as the main bacterial lineages, in addition to Archaea in the phylum . The genera , , , and were particularly abundant. Interestingly, several bacterial and archaeal sequences were related to halotolerant and halophilic genera, previously reported in a variety of marine environments and saline habitats, also in Antarctica. The analyzed salt community also included members that are believed to play a major role in the sulfur cycle.

摘要

在维多利亚地北部,博尔德黏土覆盖的冰川上局部高盐水体的蒸发,可能导致芒硝(Na₂SO₄·10H₂O)和无水芒硝(Na₂SO₄)在冰川盐锥中积聚。这样一个极度寒冷且含盐的环境与火星上的条件相似,因此可以被视为一个地球模拟环境。该研究旨在初步了解与南极芒硝和无水芒硝矿物相关的原核生物群落,并寻找有关盐类起源的线索。为此,采用新一代方法对样本进行分析,以研究原核生物(细菌和古菌)的多样性。系统发育分析确定了 、 、 和 为主要细菌谱系,此外还有 门的古菌。 属、 属、 属、 属和 属特别丰富。有趣的是,一些细菌和古菌序列与耐盐和嗜盐属有关,此前在包括南极洲在内的各种海洋环境和盐渍生境中都有报道。分析的盐类群落还包括一些被认为在硫循环中起主要作用的成员。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f7a/9504174/88ab0efe26bd/microorganisms-10-01753-g001.jpg

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