To predict impacts of ocean acidification and warming on the responses of marine populations, it is important to determine an organism’s capacity for phenotypic plasticity and genetic adaptation. We determined the effects of near-future acidification and warming across the life cycle of Heliocidaris erythrogramma from fertilisation to metamorphosis in the progeny of 16 sire-dam crosses. Sources of variation in tolerance to warming (+3°C) and acidification (-0.3 to –0.5 pH units) were investigated for fertilisation, larvae and juveniles. Across all life stages, maternal legacy was important, with dam identity significantly interacting with stressors. Across the genotypes tested, fertilisation was negatively affected by increased temperature,...
Ocean acidification (OA) from seawater uptake of rising carbon dioxide emissions impairs development...
Long-term experimental investigations of transgenerational plasticity (TGP) and transgenerational ac...
Background: Climate change will lead to intense selection on many organisms, particularly during sus...
Background: Predicting effects of rapid climate change on populations depends on measuring the effec...
<div><h3>Background</h3><p>Predicting effects of rapid climate change on populations depends on meas...
BACKGROUND: Predicting effects of rapid climate change on populations depends on measuring the effec...
To predict the effects of global change on marine populations, it is important to measure the effect...
To predict effects of global change on marine populations, it is important to measure the effects of...
Climate change, through ocean warming and ocean acidification, can affect the life cycles and popula...
Within climate change biology, the red sea urchin Mesocentrotus franciscanus has remained relatively...
Understanding how growth trajectories of calcifying invertebrates are affected by changing climate r...
Ocean Acidification (OA) represents a major field of research and increased efforts are being made t...
End-of-the-century predictions on carbon dioxide (CO2) driven ocean acidification and the continuous...
Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean ...
Background: Climate change will lead to intense selection on many organisms, particularly during sus...
Ocean acidification (OA) from seawater uptake of rising carbon dioxide emissions impairs development...
Long-term experimental investigations of transgenerational plasticity (TGP) and transgenerational ac...
Background: Climate change will lead to intense selection on many organisms, particularly during sus...
Background: Predicting effects of rapid climate change on populations depends on measuring the effec...
<div><h3>Background</h3><p>Predicting effects of rapid climate change on populations depends on meas...
BACKGROUND: Predicting effects of rapid climate change on populations depends on measuring the effec...
To predict the effects of global change on marine populations, it is important to measure the effect...
To predict effects of global change on marine populations, it is important to measure the effects of...
Climate change, through ocean warming and ocean acidification, can affect the life cycles and popula...
Within climate change biology, the red sea urchin Mesocentrotus franciscanus has remained relatively...
Understanding how growth trajectories of calcifying invertebrates are affected by changing climate r...
Ocean Acidification (OA) represents a major field of research and increased efforts are being made t...
End-of-the-century predictions on carbon dioxide (CO2) driven ocean acidification and the continuous...
Phenotypic plasticity is expected to play a major adaptive role in the response of species to ocean ...
Background: Climate change will lead to intense selection on many organisms, particularly during sus...
Ocean acidification (OA) from seawater uptake of rising carbon dioxide emissions impairs development...
Long-term experimental investigations of transgenerational plasticity (TGP) and transgenerational ac...
Background: Climate change will lead to intense selection on many organisms, particularly during sus...