Seawater carbonate chemistry and genetic diversity of juvenile yellowtail kingfish (Seriola lalandi)

Estimating the heritability and genotype by environment (GxE) interactions of performance-related traits (e.g., growth, survival, reproduction) under future ocean conditions is necessary for inferring the adaptive potential of marine species to climate change. To date, no studies have used quantitative genetics techniques to test the adaptive potential of large pelagic fishes to the combined effects of elevated water temperature and ocean acidification. We used an experimental approach to test for heritability and GxE interactions in morphological traits of juvenile yellowtail kingfish, Seriola lalandi, under current-day and predicted future ocean conditions. We also tracked the fate of genetic diversity among treatments over the experimental period to test for selection favoring some genotypes over others under elevated temperature and CO2. Specifically, we reared kingfish to 21 days post hatching (dph) in a fully crossed 2 × 2 experimental design comprising current-day average summer temperature (21°C) and seawater pCO2 (500 μatm CO2) and elevated temperature (25°C) and seawater pCO2 (1,000 μatm CO2). We sampled larvae and juveniles at 1, 11, and 21 dph and identified family of origin of each fish (1,942 in total) by DNA parentage analysis. The animal model was used to estimate heritability of morphological traits and test for GxE interactions among the experimental treatments at 21 dph. Elevated temperature, but not elevated CO2 affected all morphological traits. Weight, length and other morphological traits in juvenile yellowtail kingfish exhibited low but significant heritability under current day and elevated temperature. However, there were no measurable GxE interactions in morphological traits between the two temperature treatments at 21 dph. Similarly, there was no detectable change in any of the measures of genetic diversity over the duration of the experiment. Nonetheless, one family exhibited differential survivorship between temperatures, declining in relative abundance between 1 and 21 dph at 21°C, but increasing in relative abundance between 1 and 21 dph at 25°C. This suggests that this family line could perform better under future warming than in current-day conditions. Our results provide the first preliminary evidence of the adaptive potential of a large pelagic fisheries species to future ocean conditions.

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Cite this as

Munday, Philip L, Schunter, Celia, Allan, Bridie J M, Nicol, Simon, Parsons, Darren M, Pether, Stephen M J, Pope, Stephen, Ravasi, Timothy, Setiawan, Alvin N, Smith, Neville, Domingos, Jose A (2023). Dataset: Seawater carbonate chemistry and genetic diversity of juvenile yellowtail kingfish (Seriola lalandi). https://doi.org/10.1594/PANGAEA.959709

DOI retrieved: 2023

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.959709
Author Munday, Philip L
Given Name Philip L
Family Name Munday
More Authors
Schunter, Celia
Allan, Bridie J M
Nicol, Simon
Parsons, Darren M
Pether, Stephen M J
Pope, Stephen
Ravasi, Timothy
Setiawan, Alvin N
Smith, Neville
Domingos, Jose A
Source Creation 2023
Publication Year 2023
Resource Type text/tab-separated-values - filename: Munday-etal_2019_FEE
Subject Areas
Name: BiologicalClassification

Name: Chemistry

Name: Ecology

Related Identifiers
Title: Testing the Adaptive Potential of Yellowtail Kingfish to Ocean Warming and Acidification
Identifier: https://doi.org/10.3389/fevo.2019.00253
Type: DOI
Relation: References
Year: 2019
Source: Frontiers in Ecology and Evolution
Authors: Munday Philip L , Schunter Celia , Allan Bridie J M , Nicol Simon , Parsons Darren M , Pether Stephen M J , Pope Stephen , Ravasi Timothy , Setiawan Alvin N , Smith Neville , Domingos Jose A , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James , Gentili Bernard , Hagens Mathilde , Hofmann Andreas , Mueller Jens-Daniel , Proye Aurélien , Rae James , Soetaert Karline .

Title: seacarb: seawater carbonate chemistry with R. R package version 3.3.1
Identifier: https://cran.r-project.org/web/packages/seacarb/index.html
Type: DOI
Relation: References
Year: 2022
Authors: Munday Philip L , Schunter Celia , Allan Bridie J M , Nicol Simon , Parsons Darren M , Pether Stephen M J , Pope Stephen , Ravasi Timothy , Setiawan Alvin N , Smith Neville , Domingos Jose A , Gattuso Jean-Pierre , Epitalon Jean-Marie , Lavigne Héloïse , Orr James , Gentili Bernard , Hagens Mathilde , Hofmann Andreas , Mueller Jens-Daniel , Proye Aurélien , Rae James , Soetaert Karline .