Dataset: Survival - pCO2 x DO effects on Menidia menidiaCoastal ecosystems experience substantial natural fluctuations in pCO2 and dissolved oxygen (DO) conditions on diel, tidal, seasonal and interannual timescales. Rising carbon dioxide emissions and anthropogenic nutrient input are expected to increase these pCO2 and DO cycles in severity and duration of acidification and hypoxia. How coastal marine organisms respond to natural pCO2 × DO variability and future climate change remains largely unknown. Here, we assess the impact of static and cycling pCO2 × DO conditions of various magnitudes and frequencies on early life survival and growth of an important coastal forage fish, Menidia menidia. Static low DO conditions severely decreased em...
Ocean acidification, resulting from increasing atmospheric carbon dioxide (CO2) emissions, can affec...
Understanding how marine organisms will be affected by global change is of primary importance to ens...
Surprisingly little is known about potential effects of ocean acidification on krill of the Northern...
Dataset: Growth - pCO2 x DO effects on Menidia menidiaCoastal ecosystems experience substantial natu...
Dataset: Carbonate Chemistry - pCO2 x DO effects on Menidia menidiaCoastal ecosystems experience sub...
Ocean acidification (OA) during the coming century will impact marine ecosystems in profound ways. L...
Dataset: Long-term Menidia menidia growthThese data include the total length, wet weight, and condit...
Rising oceanic pCO2 levels could affect many traits in fish early life stages, but only few species ...
Concurrent ocean warming and acidification demand experimental approaches that assess biological sen...
Dataset: Survival and sizeWild-caught M. menidia adults were spawned to test whether offspring from ...
Whether marine fish will grow differently in future high pCO2 environments remains surprisingly unce...
Dataset: CO2 x temperature effects on Menidia menidia offspringIn five individual rearing experiment...
Data archiving statement: Life‐history, metabolic and water chemistry data have been deposited in th...
Ocean acidification, resulting from increasing atmospheric carbon dioxide (CO2) emissions, can affec...
Increasing atmospheric CO2 levels are driving changes in the seawater carbonate system, resulting in...
Ocean acidification, resulting from increasing atmospheric carbon dioxide (CO2) emissions, can affec...
Understanding how marine organisms will be affected by global change is of primary importance to ens...
Surprisingly little is known about potential effects of ocean acidification on krill of the Northern...
Dataset: Growth - pCO2 x DO effects on Menidia menidiaCoastal ecosystems experience substantial natu...
Dataset: Carbonate Chemistry - pCO2 x DO effects on Menidia menidiaCoastal ecosystems experience sub...
Ocean acidification (OA) during the coming century will impact marine ecosystems in profound ways. L...
Dataset: Long-term Menidia menidia growthThese data include the total length, wet weight, and condit...
Rising oceanic pCO2 levels could affect many traits in fish early life stages, but only few species ...
Concurrent ocean warming and acidification demand experimental approaches that assess biological sen...
Dataset: Survival and sizeWild-caught M. menidia adults were spawned to test whether offspring from ...
Whether marine fish will grow differently in future high pCO2 environments remains surprisingly unce...
Dataset: CO2 x temperature effects on Menidia menidia offspringIn five individual rearing experiment...
Data archiving statement: Life‐history, metabolic and water chemistry data have been deposited in th...
Ocean acidification, resulting from increasing atmospheric carbon dioxide (CO2) emissions, can affec...
Increasing atmospheric CO2 levels are driving changes in the seawater carbonate system, resulting in...
Ocean acidification, resulting from increasing atmospheric carbon dioxide (CO2) emissions, can affec...
Understanding how marine organisms will be affected by global change is of primary importance to ens...
Surprisingly little is known about potential effects of ocean acidification on krill of the Northern...