Hydrochemical gradients driving extremophile distribution in saline and brine groundwater of southern Poland

IF 3.6 4区 生物学 Q2 ENVIRONMENTAL SCIENCES Environmental Microbiology Reports Pub Date : 2024-10-23 DOI:10.1111/1758-2229.70030
Mirosław Słowakiewicz, Weronika Goraj, Tomasz Segit, Katarzyna Wątor, Dariusz Dobrzyński
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Abstract

Extreme environments, such as highly saline ecosystems, are characterised by a limited presence of microbial communities capable of tolerating and thriving under these conditions. To better understand the limits of life and its chemical and microbiological drivers, highly saline and brine groundwaters of Na-Cl and Na-Ca-Cl types with notably diverse SO4 contents were sampled in water intakes and springs from sedimentary aquifers located in the Outer Carpathians and the Carpathian Foredeep basin and its basement in Poland. Chemical and microbiological methods were used to identify the composition of groundwaters, determine microbial diversity, and indicate processes controlling their distribution using multivariate statistical analyses. DNA sequencing targeting V3-V4 and V4-V5 gene regions revealed a predominance of Proteobacteriota, Methanobacteria, Methanomicrobia, and Nanoarchaea in most of the water samples, irrespective of their geological context. Despite the sample-size constraint, redundancy analysis employing a compositional approach to hydrochemical predictors identified Cl/SO4 and Cl/HCO3 ratios, and specific electrical conductivity, as key gradients shaping microbial communities, depending on the analysed gene regions. Analysis of functional groups revealed that methanogenesis, sulphate oxidation and reduction, and the nitrogen cycle define and distinguish the halotolerant communities in the samples. These communities are characterised by an inverse relationship between methanogens and sulphur-cycling microorganisms.

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驱动波兰南部含盐和含盐地下水中极端嗜盐菌分布的水化学梯度。
高盐度生态系统等极端环境的特点是,能够在这些条件下耐受和繁衍的微生物群落数量有限。为了更好地了解生命的极限及其化学和微生物驱动因素,我们在波兰外喀尔巴阡山脉和喀尔巴阡山前深盆地及其基底沉积含水层的进水口和泉水中采集了二氧化硫含量显著不同的 Na-Cl 和 Na-Ca-Cl 型高盐度和盐水地下水样本。采用化学和微生物学方法确定了地下水的成分,确定了微生物的多样性,并利用多元统计分析指出了控制其分布的过程。以 V3-V4 和 V4-V5 基因区为目标的 DNA 测序显示,无论地质背景如何,大多数水样中都主要存在变形杆菌、甲烷杆菌、甲烷微生物和纳米古细菌。尽管受到样本量的限制,但采用水化学预测因子组成方法进行的冗余分析发现,Cl/SO4 和 Cl/HCO3 比率以及比电导率是形成微生物群落的关键梯度,具体取决于分析的基因区域。功能群分析表明,甲烷生成、硫酸盐氧化和还原以及氮循环决定并区分了样本中的耐卤群落。这些群落的特点是甲烷菌和硫循环微生物之间的反比关系。
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来源期刊
Environmental Microbiology Reports
Environmental Microbiology Reports ENVIRONMENTAL SCIENCES-MICROBIOLOGY
CiteScore
6.00
自引率
3.00%
发文量
91
审稿时长
3.0 months
期刊介绍: The journal is identical in scope to Environmental Microbiology, shares the same editorial team and submission site, and will apply the same high level acceptance criteria. The two journals will be mutually supportive and evolve side-by-side. Environmental Microbiology Reports provides a high profile vehicle for publication of the most innovative, original and rigorous research in the field. The scope of the Journal encompasses the diversity of current research on microbial processes in the environment, microbial communities, interactions and evolution and includes, but is not limited to, the following: the structure, activities and communal behaviour of microbial communities microbial community genetics and evolutionary processes microbial symbioses, microbial interactions and interactions with plants, animals and abiotic factors microbes in the tree of life, microbial diversification and evolution population biology and clonal structure microbial metabolic and structural diversity microbial physiology, growth and survival microbes and surfaces, adhesion and biofouling responses to environmental signals and stress factors modelling and theory development pollution microbiology extremophiles and life in extreme and unusual little-explored habitats element cycles and biogeochemical processes, primary and secondary production microbes in a changing world, microbially-influenced global changes evolution and diversity of archaeal and bacterial viruses new technological developments in microbial ecology and evolution, in particular for the study of activities of microbial communities, non-culturable microorganisms and emerging pathogens.
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