O2 consumption, head surface area, and mantle length in paralarval Doryteuthis opalescens and Doryteuthis pealeii
Data files
Apr 29, 2026 version files 27.30 KB
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Head_Surface_Area_and_Mantle_Length_in_Paralarval_Doryteuthis_opalescens-_D._opalescens_Head_SA_and_ML.csv
7.31 KB
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Head_Surface_Area_and_Mantle_Length_in_Paralarval_Doryteuthis_pealeii_-__D._pealeii_Head_SA_and_ML_.csv
6.62 KB
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Oxygen_Consumption_in_Paralarval_Doryteuthis_opalescens_-__D._opalescens_Respiration_.csv
4.06 KB
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Oxygen_Consumption_in_Paralarval_Doryteuthis_pealeii_-_D._pealeii_Respiration.csv
4.08 KB
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README.md
5.21 KB
Abstract
Projected increases in ocean temperature and partial pressure of carbon dioxide (pCO2) due to anthropogenic carbon emissions are expected to significantly alter coastal marine ecosystems, particularly within the Southern California Bight and Northwest Atlantic Ecoregion. These changes may disrupt food web stability through alterations in abiotic conditions. To assess the impacts of elevated temperature and pCO2 on embryonic development in the superorder Decapodiformes, we investigated two mid-trophic squid species, Doryteuthis opalescens and Doryteuthis pealeii, during their paralarval stage. Specifically, we examined metabolic and morphological responses in squid reared in four seawater treatments: combinations of present-day and projected levels of temperature and pCO2 by the end of the century. The results revealed species-specific responses. In general, D. opalescens paralarvae exhibited reduced morphological development under elevated temperature and pCO2 conditions. In contrast, D. pealeii paralarvae demonstrated increased morphological dimensions under the same conditions. Additionally, D. pealeii paralarvae showed elevated O2 consumption rates, while D. opalescens paralarvae exhibited a more subdued metabolic response to temperature increases. These findings highlight significant interspecific variability in responses to future ocean conditions, despite the similarity in life history traits between the two species. This study underscores the complexity of climate change impacts on Decapodiformes and emphasizes the necessity of species-specific assessments to predict ecological consequences for marine organisms.
Dataset DOI: 10.5061/dryad.mcvdnckfx
Description of the data and file structure
This dataset contains measurements of metabolic rate and morphological traits in paralarvae of the squid species Doryteuthis opalescens and Doryteuthis pealeii. Individuals were reared under combinations of present-day and projected end-of-century seawater temperature and partial pressure of carbon dioxide (pCO2) conditions to examine physiological and developmental responses to ocean warming and acidification.
Measurements include oxygen consumption rates, head surface area, and mantle length collected during the paralarval stage. These data were generated as part of a controlled laboratory experiment conducted between 2023 and 2024 at the Coastal and Marine Institute Laboratory (CMIL) at San Diego State University.
Files and variables
Head_Surface_Area_and_Mantle_Length_in_Paralarval_Doryteuthis_opalescens-_D._opalescens_Head_SA_and_ML.csv
Description: head surface area, and mantle length collected during the paralarval stage of D. opalescens under differing carbon concentrations and temperatures.
Head_Surface_Area_and_Mantle_Length_in_Paralarval_Doryteuthis_pealeii_-__D._pealeii_Head_SA_and_ML_.csv
Description: head surface area, and mantle length collected during the paralarval stage of D. pealeii under differing carbon concentrations and temperatures.
Oxygen_Consumption_in_Paralarval_Doryteuthis_opalescens_-__D._opalescens_Respiration_.csv
Description: oxygen consumption rates collected during the paralarval stage of D. opalescens under differing carbon concentrations and temperatures.
Oxygen_Consumption_in_Paralarval_Doryteuthis_pealeii_-_D._pealeii_Respiration.csv
Description: head surface area, and mantle length collected during the paralarval stage of D. pealeii under differing carbon concentrations and temperatures.
Definitions:
| D. opalescens | Subject species Doryteuthis opalescens, Common name California Market Squid | |
| D. pealeii | Subject Species Doryteuthis pealeii, Common name Longfin Inshore Squid | |
| Replicate Type | Count | Replicate with the number 3 would represent the third repitition of that measurement |
| Capsule # | 20 Egg Capsules were reared during each run of the experiment. Capsule number | Data labeled under Capsule 4 for example would represent data collected from paralarvae hatched from capsule assigned the number 4 |
| Temperature | Temperature of the water capules were reared in, measured in celcius | |
| pCO2 | partial pressure of Carbon Dioxide measured in microatmospheres | |
| Image ID | Raw image file ID that corresponds to specific paralarvae | Image 529 in figure three corresponds to the paralarvae photographed in image number 529. The measurements taken for this paralarvae would be under this section. |
| Head SA | Head Surface Area of paralarvae | |
| ML | Mantle length of the paralarvae | |
| Respiration | Rate definied as rate of o2 Consumption (per paralarvae) | Measured in umol/ghr |
