Seawater carbonate chemistry and ion-transporting capacity and aerobic respiration of larval white seabass (Atractoscion nobilis)

Ocean acidification (OA) has been proposed to increase the energetic demand for acid-base regulation at the expense of larval fish growth. Here, white seabass (Atractoscion nobilis) eggs and larvae were reared at control (542 +/- 28 μatm) and elevated pCO2 (1,831 +/- 105 μatm) until five days post-fertilization (dpf). Skin ionocytes were identified by immunodetection of the Na+/K+-ATPase (NKA) enzyme. Larvae exposed to elevated pCO2 possessed significantly higher skin ionocyte number and density compared to control larvae. However, when ionocyte size was accounted for, the relative ionocyte area (a proxy for total ionoregulatory capacity) was unchanged. Similarly, there were no differences in relative NKA abundance, resting O2 consumption rate, and total length between control and treatment larvae at 5 dpf, nor in the rate at which relative ionocyte area and total length changed between 2–5 dpf. Altogether, our results suggest that OA conditions projected for the next century do not significantly affect the ionoregulatory capacity or energy consumption of larval white seabass. Finally, a retroactive analysis of the water in the recirculating aquarium system that housed the broodstock revealed the parents had been exposed to average pCO2 of 1,200 μatm for at least 3.5 years prior to this experiment. Future studies should investigate whether larval white seabass are naturally resilient to OA, or if this resilience is the result of parental chronic acclimation to OA, and/or from natural selection during spawning and fertilization in elevated pCO2.

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Kwan, Garfield Tsz, Shen, Sara G, Drawbridge, Mark, Tresguerres, Martin (2021). Dataset: Seawater carbonate chemistry and ion-transporting capacity and aerobic respiration of larval white seabass (Atractoscion nobilis). https://doi.org/10.1594/PANGAEA.933100

DOI retrieved: 2021

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.933100
Author Kwan, Garfield Tsz
Given Name Garfield Tsz
Family Name Kwan
More Authors
Shen, Sara G
Drawbridge, Mark
Tresguerres, Martin
Source Creation 2021
Publication Year 2021
Resource Type text/tab-separated-values - filename: Kwan-etal_2021_STE
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Name: Ecology

Related Identifiers
Title: Ion-transporting capacity and aerobic respiration of larval white seabass (Atractoscion nobilis) may be resilient to ocean acidification conditions
Identifier: https://doi.org/10.1016/j.scitotenv.2021.148285
Type: DOI
Relation: References
Year: 2021
Source: Science of the Total Environment
Authors: Kwan Garfield Tsz , Shen Sara G , Drawbridge Mark , Checkley David M , Tresguerres Martin , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.2.16
Identifier: https://cran.r-project.org/web/packages/seacarb/index.html
Type: DOI
Relation: References
Year: 2021
Authors: Kwan Garfield Tsz , Shen Sara G , Drawbridge Mark , Checkley David M , Tresguerres Martin , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James .