Future climate scenarios in the Baltic Sea project an increase of cyanobacterial bloom frequency and duration, attributed to eutrophication and climate change. Some cyanobacteria can be toxic and their impact on ecosystem services is relevant for a sustainable sea. Yet, there is limited understanding of the mechanisms regulating cyanobacterial diversity and biogeography. Here we unravel successional patterns and changes in cyanobacterial community structure using a 2-year monthly time series during the productive season in a 100 km coastal-offshore transect using microscopy and high-throughput sequencing of 16S rRNA gene fragments. A total of 565 cyanobacterial OTUs were found, of which 231 where filamentous/colonial and 334 picocyanobacter...
Cyanobacterial blooms in the Baltic Sea are dominated by diazotrophic cyanobacteria, i.e. Aphanizome...
Compared to other phytoplankton groups, nitrogen-fixing cyanobacteria generally prefer high water te...
A temporally and spatially detailed historical (1985–2018) analysis of cyanobacteria blooms was perf...
Future climate scenarios in the Baltic Sea project an increase of cyanobacterial bloom frequency and...
Future climate scenarios in the Baltic Sea project an increase of cyanobacterial bloom frequency and...
Cyanobacteria are important phytoplankton in the Baltic Sea, an estuarine-like environment with pron...
Almost every summer, dense blooms of filamentous cyanobacteria are formed in the Baltic Sea. These b...
As cyanobacteria can be found in a wide variety of environments and can cause great damage to ecosys...
Future climate scenarios in the Baltic Sea project increasing sea surface temperature, as well as in...
<p>Frequencies and biomass of Baltic Sea cyanobacterial blooms are expected to be higher in future c...
Environmental changes, including hydrological modifications caused by global warming, are one of the...
Frequencies and biomass of Baltic Sea cyanobacterial blooms are expected to be higher in future clim...
Summer blooms of filamentous, diazotrophic cyanobacteria are typical of the Baltic Sea Proper, and a...
The frequency and severity of cyanobacterial bloom are at risk of increasing as a consequence of eut...
Cyanobacterial blooms regularly occur in the Baltic Sea during the summer months, with filamentous, ...
Cyanobacterial blooms in the Baltic Sea are dominated by diazotrophic cyanobacteria, i.e. Aphanizome...
Compared to other phytoplankton groups, nitrogen-fixing cyanobacteria generally prefer high water te...
A temporally and spatially detailed historical (1985–2018) analysis of cyanobacteria blooms was perf...
Future climate scenarios in the Baltic Sea project an increase of cyanobacterial bloom frequency and...
Future climate scenarios in the Baltic Sea project an increase of cyanobacterial bloom frequency and...
Cyanobacteria are important phytoplankton in the Baltic Sea, an estuarine-like environment with pron...
Almost every summer, dense blooms of filamentous cyanobacteria are formed in the Baltic Sea. These b...
As cyanobacteria can be found in a wide variety of environments and can cause great damage to ecosys...
Future climate scenarios in the Baltic Sea project increasing sea surface temperature, as well as in...
<p>Frequencies and biomass of Baltic Sea cyanobacterial blooms are expected to be higher in future c...
Environmental changes, including hydrological modifications caused by global warming, are one of the...
Frequencies and biomass of Baltic Sea cyanobacterial blooms are expected to be higher in future clim...
Summer blooms of filamentous, diazotrophic cyanobacteria are typical of the Baltic Sea Proper, and a...
The frequency and severity of cyanobacterial bloom are at risk of increasing as a consequence of eut...
Cyanobacterial blooms regularly occur in the Baltic Sea during the summer months, with filamentous, ...
Cyanobacterial blooms in the Baltic Sea are dominated by diazotrophic cyanobacteria, i.e. Aphanizome...
Compared to other phytoplankton groups, nitrogen-fixing cyanobacteria generally prefer high water te...
A temporally and spatially detailed historical (1985–2018) analysis of cyanobacteria blooms was perf...