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Vulnerability of Eastern Tropical Pacific chondrichthyan fish to climate change

  • Florencia Cerutti-Pereyra*
  • , Elizabeth J. Drenkard
  • , Mario Espinoza
  • , Brittany Finucci
  • , Felipe Galván-Magaña
  • , Ana Hacohen-Domené
  • , Alexander Hearn
  • , Mauricio E. Hoyos-Padilla
  • , James T. Ketchum
  • , Paola A. Mejía-Falla
  • , Ana V. Moya-Serrano
  • , Andres F. Navia
  • , Diana A. Pazmiño
  • , Deni Ramírez-Macías
  • , Jodie L. Rummer
  • , Pelayo Salinas-de-León
  • , Oscar Sosa-Nishizaki
  • , Charles Stock
  • , Andrew Chin
  • *Corresponding author for this work
  • Charles Darwin Foundation
  • National Oceanic and Atmospheric Administration
  • University of Costa Rica
  • MigraMar
  • National Institute of Water and Atmospheric Research
  • Instituto Politécnico Nacional
  • University of the Valley of Guatemala
  • Pelagios-Kakunjá A.C.
  • Wildlife Conservation Society—WCS Colombia
  • Fundación colombiana para la investigación y conservación de tiburones y rayas - SQUALUS
  • Whale Shark Mexico
  • James Cook University Queensland
  • Nova Southeastern University
  • Centro de Investigacion Cientifica y de Educacion Superior de Ensenada

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Climate change is an environmental emergency threatening species and ecosystems globally. Oceans have absorbed about 90% of anthropogenic heat and 20%–30% of the carbon emissions, resulting in ocean warming, acidification, deoxygenation, changes in ocean stratification and nutrient availability, and more severe extreme events. Given predictions of further changes, there is a critical need to understand how marine species will be affected. Here, we used an integrated risk assessment framework to evaluate the vulnerability of 132 chondrichthyans in the Eastern Tropical Pacific (ETP) to the impacts of climate change. Taking a precautionary view, we found that almost a quarter (23%) of the ETP chondrichthyan species evaluated were highly vulnerable to climate change, and much of the rest (76%) were moderately vulnerable. Most of the highly vulnerable species are batoids (77%), and a large proportion (90%) are coastal or pelagic species that use coastal habitats as nurseries. Six species of batoids were highly vulnerable in all three components of the assessment (exposure, sensitivity and adaptive capacity). This assessment indicates that coastal species, particularly those relying on inshore nursery areas are the most vulnerable to climate change. Ocean warming, in combination with acidification and potential deoxygenation, will likely have widespread effects on ETP chondrichthyan species, but coastal species may also contend with changes in freshwater inputs, salinity, and sea level rise. This climate-related vulnerability is compounded by other anthropogenic factors, such as overfishing and habitat degradation already occurring in the region. Mitigating the impacts of climate change on ETP chondrichthyans involves a range of approaches that include addressing habitat degradation, sustainability of exploitation, and species-specific actions may be required for species at higher risk. The assessment also highlighted the need to further understand climate change's impacts on key ETP habitats and processes and identified knowledge gaps on ETP chondrichthyan species.

Original languageEnglish
Article numbere17373
JournalGlobal Change Biology
Volume30
Issue number7
DOIs
StatePublished - Jul 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 14 - Life Below Water
    SDG 14 Life Below Water
  3. SDG 15 - Life on Land
    SDG 15 Life on Land

Keywords

  • ETP
  • batoid
  • chimaera
  • ecological risk assessment
  • elasmobranch
  • shark

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