Global warming scenarios indicate that in subarctic regions, the precipitation will increase in the future. Coastal bacteria will thus receive increasing organic carbon sources from land runoff. How such changes will affect the function and taxonomic composition of coastal bacteria is poorly known. We performed a 10-day experiment with two isolated bacteria: Shewanella baltica from a seaside location and Duganella sp. from a river mouth, and provided them with a plankton and a river extract as food substrate. The bacterial growth and carbon consumption were monitored over the experimental period. Shewanella and Duganella consumed 40% and 30% of the plankton extract, respectively, while the consumption of the river extract was low for both b...
Climate change is expected to increase the precipitation ~30% in higher latitudes during the next ce...
Recent research in microbial ecology has focused on how aquatic bacterial communities are assembled....
Heterotrophic bacterioplankton play a significant role in carbon cycle in oceans. It is crucial to i...
Global warming scenarios indicate that in subarctic regions, the precipitation will increase in the ...
Bacteria are major consumers of dissolved organic matter (DOM) in aquatic systems. In coastal zones,...
We studied the distribution and seasonal dynamics of five species from the genus Flavobacterium and ...
Bacteria are major utilizers of dissolved organic matter in aquatic systems. In coastal areas bacter...
Climate change is projected to cause increased inflow of terrestrial dissolved organic matter to coa...
Coastal ecosystems are highly dynamic and can be strongly influenced by climate change, anthropogeni...
Predicted increases in runoff of terrestrial dissolved organic matter (DOM) and sea surface temperat...
In the subarctic region, climate warming and permafrost thaw are leading to emergence of ponds and t...
In northern marginal seas, like the northern Baltic Sea, climate change will lead to many alteration...
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 ...
Climate change predictions indicate that coastal and estuarine environments will receive increased t...
Climate change is expected to increase the precipitation ~30% in higher latitudes during the next ce...
Recent research in microbial ecology has focused on how aquatic bacterial communities are assembled....
Heterotrophic bacterioplankton play a significant role in carbon cycle in oceans. It is crucial to i...
Global warming scenarios indicate that in subarctic regions, the precipitation will increase in the ...
Bacteria are major consumers of dissolved organic matter (DOM) in aquatic systems. In coastal zones,...
We studied the distribution and seasonal dynamics of five species from the genus Flavobacterium and ...
Bacteria are major utilizers of dissolved organic matter in aquatic systems. In coastal areas bacter...
Climate change is projected to cause increased inflow of terrestrial dissolved organic matter to coa...
Coastal ecosystems are highly dynamic and can be strongly influenced by climate change, anthropogeni...
Predicted increases in runoff of terrestrial dissolved organic matter (DOM) and sea surface temperat...
In the subarctic region, climate warming and permafrost thaw are leading to emergence of ponds and t...
In northern marginal seas, like the northern Baltic Sea, climate change will lead to many alteration...
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 ...
Climate change predictions indicate that coastal and estuarine environments will receive increased t...
Climate change is expected to increase the precipitation ~30% in higher latitudes during the next ce...
Recent research in microbial ecology has focused on how aquatic bacterial communities are assembled....
Heterotrophic bacterioplankton play a significant role in carbon cycle in oceans. It is crucial to i...