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October 9, 2025Environmental Microbiology0 citationsOpen Access

Identification and Global Distribution of a Core Microbiome From High‐Arctic Lakes

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EHEmily N. HallettInstitut National de la Recherche ScientifiqueJCJérôme ComteEnvironment and Climate Change Canada

Key Points

  • Diverse microbial communities were identified in Arctic lakes, highlighting their unique ecological roles.
  • The comparison of Arctic and temperate lake microbiomes showed distinct assemblages based on dissolved organic matter characteristics.
  • High-throughput amplicon sequencing of the 16S rRNA gene was used to analyze the microbial content of these lakes.
  • This study emphasizes the importance of understanding microbial ecology in Arctic lakes amid climate change.

Abstract

ABSTRACT Arctic lakes are sentinels of climate change, yet their microbial community structure and functioning remain poorly understood. This study analysed the genetic content of clear‐water Arctic lakes and their surroundings using high‐throughput amplicon sequencing of the 16S rRNA gene to identify their core microbiome and its contribution to the overall taxonomy pool. To assess geographical constraints and oligotrophic conditions, these results were compared with a latitudinally diverse multi‐basin oligotrophic lake in a temperate climate. Arctic and temperate lakes exhibited different assemblages, but both showed similar transitional gradients of microbial community composition from upstream soils/inlets through the lake system to the outlet, driven mainly by the dissolved organic matter (DOM) characteristics. Distinct core microbiomes were identified for temperate and Arctic lakes, with Arctic lakes appearing more diverse. A limited shared core microbiome was observed between the two regions, composed mostly of typical freshwater bacteria. While core taxa identities differed between regions, most exhibited characteristics of generalist bacteria with a strong global presence. These results provide key insights into the structure of remote high Arctic lakes, contributing to our understanding of aquatic microbial ecology in a transitioning Arctic and identifying microbial communities and individual taxa of interest for further study on oligotrophy.

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Cite This Study

Hallett et al. (2025) studied this question.

synapsesocial.com/papers/68e7103b90569dd607ee6890https://doi.org/10.1111/1462-2920.70182
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Bacterial divergence among the interconnected habitats of a High Arctic Lake2025
  2. 2Differences in Bacterial Communities of Deep and Shallow Subarctic Ice-Covered Lakes in the Northern Pole of Cold2026
  3. 3Functional Genetic Potential Of Benthic Microbial Mat Communities In Arctic, Antarctic And Sub-Antarctic Lakes2026
  4. 4Diverging contaminant profiles and prokaryotic assemblages in Arctic and Antarctic lake sediment2026
  5. 5Microbial response to climate-induced nutrient alterations in high Arctic freshwaters2024