Climate change is projected to cause increased inflow of terrestrial dissolved organic matter to coastal areas in northerly regions. Estuarine bacterial community will thereby receive larger loads of organic matter and inorganic nutrients available for microbial metabolism. The composition of the bacterial community and its ecological functions may thus be affected. We studied the responses of bacterial community to inflow of terrestrial dissolved organic matter in a subarctic estuary in the northern Baltic Sea, using a 16S rRNA gene metabarcoding approach. Betaproteobacteria dominated during the spring river flush, constituting ~ 60% of the bacterial community. Bacterial diversity increased as the runoff decreased during summer, when Verru...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...
Benthic microbial communities of intertidal zones perform important biogeochemical processes and pro...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...
Climate change is projected to cause increased inflow of terrestrial dissolved organic matter to coa...
Bacteria are major consumers of dissolved organic matter (DOM) in aquatic systems. In coastal zones,...
Coastal zones are important transitional areas between the land and sea, where both terrestrial and ...
Predicted increases in runoff of terrestrial dissolved organic matter (DOM) and sea surface temperat...
We studied the distribution and seasonal dynamics of five species from the genus Flavobacterium and ...
Climate change is expected to increase the precipitation ~30% in higher latitudes during the next ce...
Increased river loads are projected as one of the major consequences of climate change in the northe...
Anthropogenically induced changes in precipitation are projected to generate increased river runoff ...
Coastal ecosystems play significant ecological and economic roles but are threatened and facing decl...
In northern marginal seas, like the northern Baltic Sea, climate change will lead to many alteration...
In temperate systems, phytoplankton spring blooms deplete inorganic nutrients and are major sources ...
The Arctic is experiencing dramatic changes including increases in precipitation, glacial melt, and ...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...
Benthic microbial communities of intertidal zones perform important biogeochemical processes and pro...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...
Climate change is projected to cause increased inflow of terrestrial dissolved organic matter to coa...
Bacteria are major consumers of dissolved organic matter (DOM) in aquatic systems. In coastal zones,...
Coastal zones are important transitional areas between the land and sea, where both terrestrial and ...
Predicted increases in runoff of terrestrial dissolved organic matter (DOM) and sea surface temperat...
We studied the distribution and seasonal dynamics of five species from the genus Flavobacterium and ...
Climate change is expected to increase the precipitation ~30% in higher latitudes during the next ce...
Increased river loads are projected as one of the major consequences of climate change in the northe...
Anthropogenically induced changes in precipitation are projected to generate increased river runoff ...
Coastal ecosystems play significant ecological and economic roles but are threatened and facing decl...
In northern marginal seas, like the northern Baltic Sea, climate change will lead to many alteration...
In temperate systems, phytoplankton spring blooms deplete inorganic nutrients and are major sources ...
The Arctic is experiencing dramatic changes including increases in precipitation, glacial melt, and ...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...
Benthic microbial communities of intertidal zones perform important biogeochemical processes and pro...
In this study, 16S rRNA gene sequencing was used to characterize the changes in taxonomic compositio...