We examined the impacts of ocean acidification and copper as co-stressors on the reproduction and population level responses of the benthic copepod Tisbe battagliai across two generations. Naupliar production, growth, and cuticle elemental composition were determined for four pH values: 8.06 (control); 7.95; 7.82; 7.67, with copper addition to concentrations equivalent to those in benthic pore waters. An additive synergistic effect was observed; the decline in naupliar production was greater with added copper at decreasing pH than for decreasing pH alone. Naupliar production modelled for the two generations revealed a negative synergistic impact between ocean acidification and environmentally relevant copper concentrations. Conversely, copp...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
We examined the impacts of ocean acidification and copper as co-stressors on the reproduction and po...
We examined the impacts of ocean acidification and copper as co-stressors on the reproduction and po...
<div><p>We examined the impacts of ocean acidification and copper as co-stressors on the reproductio...
Ocean acidification (OA) presents a fundamental challenge to marine biodiversity and sustained ecosy...
This is the author accepted manuscript.The final version is available from the American Chemical Soc...
Increased atmospheric CO2 concentrations are causing greater dissolution of CO2 into seawater, and a...
Increased atmospheric CO(2) concentrations are causing greater dissolution of CO(2) into seawater, a...
Published onlineJournal ArticleOcean acidification (OA) is expected to indirectly impact biota livin...
Heavy metals pollution in marine environments has caused great damage to marine biological and ecolo...
The speciation and therefore bioavailability of the common pollutant copper is predicted to increase...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...
We examined the impacts of ocean acidification and copper as co-stressors on the reproduction and po...
We examined the impacts of ocean acidification and copper as co-stressors on the reproduction and po...
<div><p>We examined the impacts of ocean acidification and copper as co-stressors on the reproductio...
Ocean acidification (OA) presents a fundamental challenge to marine biodiversity and sustained ecosy...
This is the author accepted manuscript.The final version is available from the American Chemical Soc...
Increased atmospheric CO2 concentrations are causing greater dissolution of CO2 into seawater, and a...
Increased atmospheric CO(2) concentrations are causing greater dissolution of CO(2) into seawater, a...
Published onlineJournal ArticleOcean acidification (OA) is expected to indirectly impact biota livin...
Heavy metals pollution in marine environments has caused great damage to marine biological and ecolo...
The speciation and therefore bioavailability of the common pollutant copper is predicted to increase...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
Climate change, including ocean acidification (OA), presents fundamental challenges to marine biodiv...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
The critical role played by copepods in ocean ecology and biogeochemistry warrants an understanding ...
Ocean acidification is challenging phenotypic plasticity of individuals and populations. Calanoid co...