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Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae

The effect of CO(2)-driven ocean acidification (OA) on marine biota has been extensively studied mostly on a single stage of the life cycle. However, the cumulative and population-level response to this global stressor may be biased due to transgenerational effects and their impacts on physiological...

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Autores principales: Diaz, Rosario, Lardies, Marco A., Tapia, Fabián J., Tarifeño, Eduardo, Vargas, Cristian A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6196759/
https://www.ncbi.nlm.nih.gov/pubmed/30374307
http://dx.doi.org/10.3389/fphys.2018.01349
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author Diaz, Rosario
Lardies, Marco A.
Tapia, Fabián J.
Tarifeño, Eduardo
Vargas, Cristian A.
author_facet Diaz, Rosario
Lardies, Marco A.
Tapia, Fabián J.
Tarifeño, Eduardo
Vargas, Cristian A.
author_sort Diaz, Rosario
collection PubMed
description The effect of CO(2)-driven ocean acidification (OA) on marine biota has been extensively studied mostly on a single stage of the life cycle. However, the cumulative and population-level response to this global stressor may be biased due to transgenerational effects and their impacts on physiological plasticity. In this study, we exposed adult mussels Mytilus chilensis undergoing gametogenesis to two pCO(2) levels (550 and 1200 μatm) for 16 weeks, aiming to understand if prolonged exposure of reproductive individuals to OA can affect the performance of their offspring, which, in turn, were reared under multiple stressors (pCO(2), temperature, and dissolved cadmium). Our results indicate dependence between the level of pCO(2) of the broodstock (i.e., parental effect) and the performance of larval stages in terms of growth and physiological rates, as a single effect of temperature. While main effects of pCO(2) and cadmium were observed for larval growth and ingestion rates, respectively, the combined exposure to stressors had antagonistic effects. Moreover, we found a suppression of feeding activity in post-spawning broodstock upon high pCO(2) conditions. Nevertheless, this observation was not reflected in the final weight of the broodstock and oocyte diameter. Due to the ecological and socioeconomic importance of mussels’ species around the globe, the potential implications of maternal effects for the physiology, survival, and recruitment of larvae under combined global-change stressors warrant further investigation.
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spelling pubmed-61967592018-10-29 Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae Diaz, Rosario Lardies, Marco A. Tapia, Fabián J. Tarifeño, Eduardo Vargas, Cristian A. Front Physiol Physiology The effect of CO(2)-driven ocean acidification (OA) on marine biota has been extensively studied mostly on a single stage of the life cycle. However, the cumulative and population-level response to this global stressor may be biased due to transgenerational effects and their impacts on physiological plasticity. In this study, we exposed adult mussels Mytilus chilensis undergoing gametogenesis to two pCO(2) levels (550 and 1200 μatm) for 16 weeks, aiming to understand if prolonged exposure of reproductive individuals to OA can affect the performance of their offspring, which, in turn, were reared under multiple stressors (pCO(2), temperature, and dissolved cadmium). Our results indicate dependence between the level of pCO(2) of the broodstock (i.e., parental effect) and the performance of larval stages in terms of growth and physiological rates, as a single effect of temperature. While main effects of pCO(2) and cadmium were observed for larval growth and ingestion rates, respectively, the combined exposure to stressors had antagonistic effects. Moreover, we found a suppression of feeding activity in post-spawning broodstock upon high pCO(2) conditions. Nevertheless, this observation was not reflected in the final weight of the broodstock and oocyte diameter. Due to the ecological and socioeconomic importance of mussels’ species around the globe, the potential implications of maternal effects for the physiology, survival, and recruitment of larvae under combined global-change stressors warrant further investigation. Frontiers Media S.A. 2018-10-15 /pmc/articles/PMC6196759/ /pubmed/30374307 http://dx.doi.org/10.3389/fphys.2018.01349 Text en Copyright © 2018 Diaz, Lardies, Tapia, Tarifeño and Vargas. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Diaz, Rosario
Lardies, Marco A.
Tapia, Fabián J.
Tarifeño, Eduardo
Vargas, Cristian A.
Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title_full Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title_fullStr Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title_full_unstemmed Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title_short Transgenerational Effects of pCO(2)-Driven Ocean Acidification on Adult Mussels Mytilus chilensis Modulate Physiological Response to Multiple Stressors in Larvae
title_sort transgenerational effects of pco(2)-driven ocean acidification on adult mussels mytilus chilensis modulate physiological response to multiple stressors in larvae
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6196759/
https://www.ncbi.nlm.nih.gov/pubmed/30374307
http://dx.doi.org/10.3389/fphys.2018.01349
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