© 2018 Phycological Society of America Land-based plants and ocean-dwelling microbial phototrophs known as phytoplankton, are together responsible for almost all global primary production. Habitat warming associated with anthropogenic climate change has detrimentally impacted marine primary production, with the effects observed on regional and global scales. In contrast to slower-growing higher plants, there is considerable potential for phytoplankton to evolve rapidly with changing environmental conditions. The energetic constraints associated with adaptation in phytoplankton are not yet understood, but are central to forecasting how global biogeochemical cycles respond to contemporary ocean change. Here, we demonstrate a number of potenti...
To better predict how populations and communities respond to climatic temperature variation, it is n...
To better predict how populations and communities respond to climatic temperature variation, it is n...
Rising ocean temperatures will alter the productivity and composition of marine phytoplankton commun...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
This is the final version of the article. Available from Wiley via the DOI in this recordUnderstandi...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
To better predict how populations and communities respond to climatic temperature variation, it is n...
To better predict how populations and communities respond to climatic temperature variation, it is n...
To better predict how populations and communities respond to climatic temperature variation, it is n...
Rising ocean temperatures will alter the productivity and composition of marine phytoplankton commun...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
This is the final version of the article. Available from Wiley via the DOI in this recordUnderstandi...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
The efficiency of carbon sequestration by the biological pump could decline in the coming decades be...
To better predict how populations and communities respond to climatic temperature variation, it is n...
To better predict how populations and communities respond to climatic temperature variation, it is n...
To better predict how populations and communities respond to climatic temperature variation, it is n...
Rising ocean temperatures will alter the productivity and composition of marine phytoplankton commun...