Physiological responses of juvenile Chilean scallops (Argopecten purpuratus) to isolated and combined environmental drivers of coastal upwelling

Author:

Ramajo Laura1234ORCID,Fernández Carolina13,Núñez Yolanda5,Caballero Paz2,Lardies Marco A13,Poupin María Josefina67

Affiliation:

1. Departamento de Ciencias, Facultad de Artes Liberales, Universidad Adolfo Ibáñez, Avenida Diagonal Las Torres 2640, Peñalolén, Santiago, Chile

2. Centro de Estudios Avanzados en Zonas Áridas, Avenida Ossandón 877, Coquimbo, Chile

3. Center for the Study of Multiple-drivers on Marine Socio-Ecological Systems (MUSELS), Universidad de Concepción, Chile

4. Centro de Investigación e Innovación para el Cambio Climático (CiiCC), Avenida Ejército 146, Santiago, Chile

5. Facultad de Ciencias Biológicas, Pontificia Universidad de Chile (PUC), Av Libertador Bernardo O’Higgins 340, Santiago, Chile

6. Laboratorio de Bioingeniería, Facultad de Ingeniería and Ciencias, Universidad Adolfo Ibáñez, Avenida Diagonal Las Torres 2640, Peñalolén, Santiago, Chile

7. Center of Applied Ecology and Sustainability (CAPES), Av Libertador Bernardo O'Higgins 340, Santiago, Chile

Abstract

Abstract Coastal biota is exposed to continuous environmental variability as a consequence of natural and anthropogenic processes. Responding to heterogeneous conditions requires the presence of physiological strategies to cope with the environment. Ecosystems influenced by upwelling endure naturally cold, acidic and hypoxic conditions, nevertheless they sustain major fisheries worldwide. This suggests that species inhabiting upwelling habitats possess physiological adaptations to handle high environmental variability. Here, we assessed the impact of the main upwelling drivers (temperature, pH and oxygen) in isolation and combined on eco-physiological responses of Chilean scallop Argopecten purpuratus. A. purpuratus responded to hypoxia by increasing their metabolic performance to maintain growth and calcification. Calcification was only affected by pH and increased under acidic conditions. Further, A. purpuratus juveniles prioritized calcification at the expense of growth under upwelling conditions. Increasing temperature had a significant impact by enhancing the physiological performance of A. purpuratus juveniles independently of oxygen and pH conditions, but this was associated with earlier and higher mortalities. Our results suggest that A. purpuratus is acclimated to short-term colder, acidic and hypoxic conditions, and provide important information of how this species responds to the heterogeneous environment of upwelling, which is significantly relevant in the climatic context of upwelling intensification.

Funder

FONDECYT Postdoctoral

FONDECYT Regular

MINECON NC

Ministerio de Economia, Fomento y Turismo

Publisher

Oxford University Press (OUP)

Subject

Ecology,Aquatic Science,Ecology, Evolution, Behavior and Systematics,Oceanography

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