The effects of ocean acidification and increased temperature on physiology of six strains of the polar diatom Fragilariopsis cylindrus from Greenland were investigated. Experiments were performed under manipulated pH levels (8.0, 7.7, 7.4, and 7.1) and different temperatures (1, 5, and 8 °C) to simulate changes from present to plausible future levels. Each of the 12 scenarios was run for 7 days, and a significant interaction between temperature and pH on growth was detected. By combining increased temperature and acidification, the two factors counterbalanced each other, and therefore no effect on the growth rates was found. However, the growth rates increased with elevated temperatures by 20-50% depending on the strain. In addition, a gene...
The fate of diatoms in future acidified oceans could have dramatic implications on marine ecosystems...
Variability in pH is a common occurrence in many aquatic environments, due to physical, chemical and...
In coastal marine environments, physical and biological forces can cause dynamic pH fluctuations fro...
As phytoplankton provide the carbon and the energy for all higher trophic levels in the oceans, futu...
The potential for adaptation of phytoplankton to future climate is often extrapolated based on singl...
The polar regions represent two of the most extreme environments on Earth, with sub-zero temperature...
Severely rising CO2 concentrations and subsequently increasing temperatures are two of the most fund...
Shifts in phytoplankton composition and productivity are anticipated in the future, because phytopla...
Abstract Phytoplankton are sensitive to temperature and other environmental conditions expected to c...
Temperature is one of the environmental factors that most strongly influence the life of microalgae,...
To evaluate the effects related to the combination of potential future changes in pH, temperature an...
The International Panel on Climate Change (IPCC) predicts that by the year 2100, the oceans will be ...
The potential for adaptation of phytoplankton to future climate is often extrapolated based on singl...
Focalisé sur le groupe phytoplanctonique des diatomées, ce travail de thèse a permis d'étudier l'imp...
The variability of pH is a common occurrence in many aquatic environments, due to physical, chemical...
The fate of diatoms in future acidified oceans could have dramatic implications on marine ecosystems...
Variability in pH is a common occurrence in many aquatic environments, due to physical, chemical and...
In coastal marine environments, physical and biological forces can cause dynamic pH fluctuations fro...
As phytoplankton provide the carbon and the energy for all higher trophic levels in the oceans, futu...
The potential for adaptation of phytoplankton to future climate is often extrapolated based on singl...
The polar regions represent two of the most extreme environments on Earth, with sub-zero temperature...
Severely rising CO2 concentrations and subsequently increasing temperatures are two of the most fund...
Shifts in phytoplankton composition and productivity are anticipated in the future, because phytopla...
Abstract Phytoplankton are sensitive to temperature and other environmental conditions expected to c...
Temperature is one of the environmental factors that most strongly influence the life of microalgae,...
To evaluate the effects related to the combination of potential future changes in pH, temperature an...
The International Panel on Climate Change (IPCC) predicts that by the year 2100, the oceans will be ...
The potential for adaptation of phytoplankton to future climate is often extrapolated based on singl...
Focalisé sur le groupe phytoplanctonique des diatomées, ce travail de thèse a permis d'étudier l'imp...
The variability of pH is a common occurrence in many aquatic environments, due to physical, chemical...
The fate of diatoms in future acidified oceans could have dramatic implications on marine ecosystems...
Variability in pH is a common occurrence in many aquatic environments, due to physical, chemical and...
In coastal marine environments, physical and biological forces can cause dynamic pH fluctuations fro...