Asgard archaea in saline environments.

IF 2.6 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Extremophiles Pub Date : 2022-06-28 DOI:10.1007/s00792-022-01266-z
Horia L Banciu, Ionuț M Gridan, Adrian V Zety, Andreea Baricz
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引用次数: 1

Abstract

Members of candidate Asgardarchaeota superphylum appear to share numerous eukaryotic-like attributes thus being broadly explored for their relevance to eukaryogenesis. On the contrast, the ecological roles of Asgard archaea remains understudied. Asgard archaea have been frequently associated to low-oxygen aquatic sedimentary environments worldwide spanning a broad but not extreme salinity range. To date, the available information on diversity and potential biogeochemical roles of Asgardarchaeota mostly sourced from marine habitats and to a much lesser extend from true saline environments (i.e., > 3% w/v total salinity). Here, we provide an overview on diversity and ecological implications of Asgard archaea distributed across saline environments and briefly explore their metagenome-resolved potential for osmoadaptation. Loki-, Thor- and Heimdallarchaeota are the dominant Asgard clades in saline habitats where they might employ anaerobic/microaerophilic organic matter degradation and autotrophic carbon fixation. Homologs of primary solute uptake ABC transporters seemingly prevail in Thorarchaeota, whereas those putatively involved in trehalose and ectoine biosynthesis were mostly inferred in Lokiarchaeota. We speculate that Asgardarchaeota might adopt compatible solute-accumulating ('salt-out') strategy as response to salt stress. Our current understanding on the distribution, ecology and salt-adaptive strategies of Asgardarchaeota in saline environments are, however, limited by insufficient sampling and incompleteness of the available metagenome-assembled genomes. Extensive sampling combined with 'omics'- and cultivation-based approaches seem, therefore, crucial to gain deeper knowledge on this particularly intriguing archaeal lineage.

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盐渍环境中的阿斯加德古细菌。
候选asgardarchaaota超门成员似乎具有许多真核样属性,因此被广泛探索其与真核发生的相关性。相比之下,阿斯加德古菌的生态作用仍未得到充分研究。阿斯加德古菌经常与世界范围内的低氧水生沉积环境联系在一起,这些环境跨越了广泛但不极端的盐度范围。迄今为止,关于asgardarchaaeota的多样性和潜在的生物地球化学作用的现有信息主要来自海洋栖息地,而真正的盐水环境(即> 3% w/v总盐度)的信息要少得多。本文综述了分布在咸水环境中的阿斯加德古细菌的多样性及其生态意义,并简要探讨了它们的宏基因组渗透适应潜力。Loki-, Thor-和Heimdallarchaeota是在盐碱地中占优势的阿斯加德分支,它们可能会进行厌氧/嗜微气有机物降解和自养碳固定。原生溶质摄取ABC转运体的同源物似乎在Thorarchaeota中普遍存在,而那些被认为参与海藻糖和异糖碱生物合成的转运体则主要在Lokiarchaeota中推断出来。我们推测asgardarchaaeota可能采用相容的溶质积累(“盐出”)策略来应对盐胁迫。然而,我们目前对asgardarchaaeota在盐水环境中的分布、生态和盐适应策略的了解受到采样不足和现有宏基因组组装基因组不完整的限制。因此,广泛的采样结合“组学”和基于培养的方法似乎对于深入了解这一特别有趣的古细菌谱系至关重要。
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来源期刊
Extremophiles
Extremophiles 生物-生化与分子生物学
CiteScore
6.80
自引率
6.90%
发文量
28
审稿时长
2 months
期刊介绍: Extremophiles features original research articles, reviews, and method papers on the biology, molecular biology, structure, function, and applications of microbial life at high or low temperature, pressure, acidity, alkalinity, salinity, or desiccation; or in the presence of organic solvents, heavy metals, normally toxic substances, or radiation.
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