•1 min read•from Frontiers in Marine Science | New and Recent Articles
Impact of glacial meltwater on prokaryotic dynamics in high Arctic fjords
Our take
The impact of glacial meltwater on prokaryotic dynamics in Arctic fjords represents a critical area of study amid rapid climate change. These sensitive ecosystems are increasingly affected by glacial melt, which alters physical and chemical conditions and significantly influences prokaryotic communities—key players in biogeochemical cycles. This review synthesizes current understanding of how meltwater affects community composition, functional potential, and biogeochemical processes. Addressing knowledge gaps is essential for predicting long-term ecological changes, highlighting the need for comprehensive, multi-seasonal research employing advanced molecular and modeling techniques.

Arctic fjords are among the most sensitive ecosystems, particularly affected by rapid cryospheric changes. One of the most prominent consequences of global warming in these regions is the increasing input of glacial meltwater, which alters the physical and chemical structure of fjord systems and profoundly affects prokaryotic (bacterial and archaeal) communities. Despite these changes, the impacts on prokaryotic communities, central players in biogeochemical cycles and ecosystem functioning, remain poorly understood. This review synthesizes current knowledge on how glacial meltwater influences prokaryotic dynamics in Arctic fjords pelagic ecosystems, with a focus on community composition, functional potential, and biogeochemical implications. We explore how freshwater influx affects salinity, turbidity, nutrient fluxes, and organic matter availability drives prokaryotic selection processes. Critical knowledge gaps remain, particularly in linking taxonomic shifts to changing ecosystem dynamics and predicting long-term ecological trajectories under the continued intensification of meltwater input. We emphasize the urgent need for integrative, multi-seasonal studies combining molecular tools, biogeochemical measurements, and modeling approaches to fully understand prokaryotic responses to ongoing environmental change in Arctic fjords.
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Tagged with
#ecosystem health#climate change impact#environmental DNA#glacial meltwater#Arctic fjords#prokaryotic dynamics#biogeochemical cycles#ecosystem functioning#community composition#biogeochemical implications#functional potential#nutrient fluxes#prokaryotic selection processes#freshwater influx#organic matter#ecological trajectories#salinity#turbidity#environmental change#taxonomic shifts