Motility plays a critical role in algal survival and reproduction, with implications for aquatic ecosystem stability. However, the effect of elevated CO2 on marine, brackish and freshwater algal motility is unclear. Here we show, using laboratory microscale and field mesoscale experiments, that three typical phytoplankton species had decreased motility with increased CO2. Polar marine Microglena sp., euryhaline Dunaliella salina and freshwater Chlamydomonas reinhardtii were grown under different CO2 concentrations for 5 years. Long-term acclimated Microglena sp. showed substantially decreased photo-responses in all treatments, with a photophobic reaction affecting intracellular calcium concentration. Genes regulating flagellar movement were...
Increased CO2 and associated acidification in seawater, known as ocean acidification, decreases calc...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
We studied the physiological response of phytoplankton to the interacting effects of 3 factors affec...
Motility plays a critical role in algal survival and reproduction, with implications for aquatic eco...
We investigated the effects of pH on movement behaviors of the harmful algal bloom causing raphidoph...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Global anthropogenic CO2 rise is currently creating new environments and niches for microalgae livin...
Aquatic photosynthetic micro-organisms have adapted to the variable and often-limiting availability ...
In order to investigate the possible impacts of increased atmospheric CO2 levels on algal growth and...
Increasing anthropogenic carbon dioxide is causing changes to ocean chemistry, which will continue i...
Global climate change (GCC) constitutes a complex challenge posing a serious threat to biodiversity ...
Ulva is the dominant genus in the green tide events and is considered to have efficient CO2 concentr...
Diatoms can occur as single cells or as chain-forming aggregates. These two strategies affect buoyan...
Rising atmospheric CO2 and ocean acidification are fundamentally altering conditions for life of all...
Ulva is the dominant genus in the green tide events and is considered to have efficient CO2 concentr...
Increased CO2 and associated acidification in seawater, known as ocean acidification, decreases calc...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
We studied the physiological response of phytoplankton to the interacting effects of 3 factors affec...
Motility plays a critical role in algal survival and reproduction, with implications for aquatic eco...
We investigated the effects of pH on movement behaviors of the harmful algal bloom causing raphidoph...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Global anthropogenic CO2 rise is currently creating new environments and niches for microalgae livin...
Aquatic photosynthetic micro-organisms have adapted to the variable and often-limiting availability ...
In order to investigate the possible impacts of increased atmospheric CO2 levels on algal growth and...
Increasing anthropogenic carbon dioxide is causing changes to ocean chemistry, which will continue i...
Global climate change (GCC) constitutes a complex challenge posing a serious threat to biodiversity ...
Ulva is the dominant genus in the green tide events and is considered to have efficient CO2 concentr...
Diatoms can occur as single cells or as chain-forming aggregates. These two strategies affect buoyan...
Rising atmospheric CO2 and ocean acidification are fundamentally altering conditions for life of all...
Ulva is the dominant genus in the green tide events and is considered to have efficient CO2 concentr...
Increased CO2 and associated acidification in seawater, known as ocean acidification, decreases calc...
Ocean acidification is the lowering of oceanic pH that has resulted from the increase of CO2 in the ...
We studied the physiological response of phytoplankton to the interacting effects of 3 factors affec...