Diatoms account for 40 % of marine primary production and are considered to be key players in the biological carbon pump. Ocean acidification (OA) is expected to affect diatoms primarily by changing the availability of CO2 as a substrate for photosynthesis or through altered ecological interactions within the marine food web. Yet, there is little consensus how entire diatom communities will respond to increasing CO2. To address this question, we synthesized the literature from over a decade of OA-experiments with natural diatom communities to uncover: 1) if and how bulk diatom communities respond to elevated CO2; 2) if shifts within the diatom communities could be expected and how they are expressed with respect to taxonomic affiliation and...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Carbon uptake and partitioning of two globally abundant diatom species, Thalassiosira weissflogii an...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms constitute a major group of phytoplankton, accounting for ~20% of the world’s primary produc...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Diatoms, large bloom-form...
The oceans absorb ~25% of the annual anthropogenic CO2 emissions. This causes a shift in the marine ...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms account for up to 50 % of marine primary production and areconsidered to be key players in t...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Carbon uptake and partitioning of two globally abundant diatom species, Thalassiosira weissflogii an...
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms are silicifying phytoplankton contributing about one quarter to primary production on Earth....
Diatoms constitute a major group of phytoplankton, accounting for ~20% of the world’s primary produc...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Diatoms, large bloom-form...
The oceans absorb ~25% of the annual anthropogenic CO2 emissions. This causes a shift in the marine ...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
An indoor mesocosm experiment was carried out to investigate the combined effects of ocean acidifica...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...