© 2022, The Author(s), under exclusive licence to Springer Nature Limited.Climate change can drive shifts in the seasonality of marine productivity, with consequences for the marine food web. However, these alterations in phytoplankton bloom phenology (initiation and peak timing), and the underlying drivers, are not well understood. Here, using a 30-member Large Ensemble of climate change projections, we show earlier bloom initiation in most ocean regions, yet changes in bloom peak timing vary widely by region. Shifts in both initiation and peak timing are induced by a subtle decoupling between altered phytoplankton growth and zooplankton predation, with increased zooplankton predation (top-down control) playing an important role in altered...
Knowing the magnitude and timing of pelagic primary production is important for ecosystem and carbon...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Embargo until 24 June 2022.During the past decades, many high-latitude marine systems have experienc...
Aim:This study examined phytoplankton blooms on a global scale, with the intention of describing pat...
During the past decades, many high-latitude marine systems have experienced a strong warming trend w...
Large areas of the world’s oceans experience a significant seasonal cycle in phytoplankton biomass. ...
Increasing availability and extent of biological ocean time series (from both in situ and satellite ...
In this article, we show by mesocosm experiments that winter and spring warming will lead to substan...
Increasing availability and extent of biological ocean time series (from both in situ and satellite ...
In a warming climate, differential shifts in the seasonal timing of predators and prey have been sug...
Aim: Phytoplankton form the basis of the marine food web and are responsible for approximately 50% o...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Knowing the magnitude and timing of pelagic primary production is important for ecosystem and carbon...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Embargo until 24 June 2022.During the past decades, many high-latitude marine systems have experienc...
Aim:This study examined phytoplankton blooms on a global scale, with the intention of describing pat...
During the past decades, many high-latitude marine systems have experienced a strong warming trend w...
Large areas of the world’s oceans experience a significant seasonal cycle in phytoplankton biomass. ...
Increasing availability and extent of biological ocean time series (from both in situ and satellite ...
In this article, we show by mesocosm experiments that winter and spring warming will lead to substan...
Increasing availability and extent of biological ocean time series (from both in situ and satellite ...
In a warming climate, differential shifts in the seasonal timing of predators and prey have been sug...
Aim: Phytoplankton form the basis of the marine food web and are responsible for approximately 50% o...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
Knowing the magnitude and timing of pelagic primary production is important for ecosystem and carbon...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...
1365-2486Ocean warming can modify the ecophysiology and distribution of marine organisms, and relati...