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Impact of short- and long-term exposure to elevated seawater pCO2 on metabolic rate and hypoxia tolerance in Octopus rubescens

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DataONE2021-04-14 更新2025-07-19 收录
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Much of the CO2 released by human activity into the atmosphere is dissolving into the oceans making them more acidic. In this study we provide the first data on the short- and long-term impacts of ocean acidification on octopuses. We measured routine metabolic rate (RMR) and critical oxygen pressure (Pcrit) of Octopus rubescens at elevated CO2 pressure (pCO2) with no prior acclimation, one, and five weeks acclimation. Octopuses showed significantly higher RMRs in 1500 μatm pCO2 environments with no prior acclimation than octopuses in 700 μatm or 360 μatm environments. However, both one and five weeks of acclimation showed no significant difference in RMRs between octopuses at differing pCO2, indicating that octopuses acclimated rapidly to elevated pCO2. In octopuses acclimated for five weeks at 1500 μatm pCO2 we observed impaired hypoxia tolerance as demonstrated by a significantly higher critical oxygen pressure than those acclimated to 700 μatm pCO2. Our findings suggest that O. rubes...
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2025-06-29
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