Understanding of the molecular responses underpinning diatom responses to ocean acidification is fundamental for predicting how important primary producers will be shaped by the continuous rise in atmospheric CO2. In this study, we have analyzed global transcriptomic changes of the model diatom Phaeodactylum tricornutum following growth for 15 generations in elevated pCO2 by strand-specific RNA sequencing (ssRNA-seq). Our results indicate that no significant effects of elevated pCO2 and associated carbonate chemistry changes on the physiological performance of the cells were observed after 15 generations whereas the expression of genes encoding histones and other genes involved in chromatin structure were significantly down-regulated, while...
Ocean acidification (OA) is postulated to affect the physiology, behavior, and life-history of marin...
Acidification of the ocean due to high atmospheric CO2 levels may increase the resilience of diatoms...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Ocean acidification (OA) is postulated to affect the physiology, behavior, and life-history of marin...
Acidification of the ocean due to high atmospheric CO2 levels may increase the resilience of diatoms...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Understanding of the molecular responses underpinning diatom responses to ocean acidification is fun...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Ocean acidification (OA) is postulated to affect the physiology, behavior, and life-history of marin...
Acidification of the ocean due to high atmospheric CO2 levels may increase the resilience of diatoms...
With rising atmospheric CO2, phytoplankton face shifts in ocean chemistry including increased dissol...