Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiversity and sustained ecosystem health. We determined reproductive response (measured as naupliar production), cuticle composition and stage specific growth of the copepod Tisbe battagliai over three generations at four pH conditions (pH 7.67, 7.82, 7.95, and 8.06). Naupliar production increased significantly at pH 7.95 compared with pH 8.06 followed by a decline at pH 7.82. Naupliar production at pH 7.67 was higher than pH 7.82. We attribute the increase at pH 7.95 to an initial stress response which was succeeded by a hormesis-like response at pH 7.67. A multi-generational modelling approach predicted a gradual decline in naupliar production...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Phenotypic plasticity and evolutionary adaptation allow populations to cope with global change, but ...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
Ocean acidification (OA) presents a fundamental challenge to marine biodiversity and sustained ecosy...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid c...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
The copepod Calanus finmarchicus is a key component of northern Atlantic food webs, linking energy-t...
Linking pH/pCO2 natural variation to phenotypic traits and performance of foundational species provi...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
<div><p>We examined the impacts of ocean acidification and copper as co-stressors on the reproductio...
<div><p>Concerns about increasing atmospheric CO<sub>2</sub> concentrations and global warming have ...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Phenotypic plasticity and evolutionary adaptation allow populations to cope with global change, but ...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
Ocean acidification (OA) presents a fundamental challenge to marine biodiversity and sustained ecosy...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid c...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
Understanding how copepods may respond to ocean acidification (OA) is critical for risk assessments ...
The copepod Calanus finmarchicus is a key component of northern Atlantic food webs, linking energy-t...
Linking pH/pCO2 natural variation to phenotypic traits and performance of foundational species provi...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
<div><p>We examined the impacts of ocean acidification and copper as co-stressors on the reproductio...
<div><p>Concerns about increasing atmospheric CO<sub>2</sub> concentrations and global warming have ...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Ocean acidification and climate change can affect a variety of marine species. The marine planktonic...
Phenotypic plasticity and evolutionary adaptation allow populations to cope with global change, but ...