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Climate vulnerability assessment of key fishery resources in the Northern Humboldt Current System

  • Jorge E. Ramos
  • , Jorge Tam
  • , Víctor Aramayo
  • , Felipe A. Briceño
  • , Ricardo Bandin
  • , Betsy Buitron
  • , Antonio Cuba
  • , Ernesto Fernandez
  • , Jorge Flores-Valiente
  • , Emperatriz Gomez
  • , Hans J. Jara
  • , Miguel Ñiquen
  • , Jesús Rujel
  • , Carlos M. Salazar
  • , Maria Sanjinez
  • , Rafael I. León
  • , Mark Nelson
  • , Dimitri Gutiérrez
  • , Gretta T. Pecl
  • Institute for Marine and Antarctic Studies
  • Directorate of Natural Resources
  • Direcció N de Investigaciones Oceanográ Ficas, Instituto Del Mar Del Perú (IMARPE)
  • Universidad Peruana Cayetano Heredia
  • Facultad de Ciencias Biológicas
  • Universidad Austral de Chile
  • Sociedad Peruana de Derecho Ambiental
  • Office of Science and Technology
  • University of Tasmania

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

The Northern Humboldt Current System sustains one of the most productive fisheries in the world. However, climate change is anticipated to negatively affect fish production in this region over the next few decades, and detailed analyses for many fishery resources are unavailable. We implemented a trait-based Climate Vulnerability Assessment based on expert elicitation to estimate the relative vulnerability of 28 fishery resources (benthic, demersal, and pelagic) to the impacts of climate change by 2055; ten exposure factors (e.g., temperature, salinity, pH, chlorophyll) and 13 sensitivity attributes (biological and population-level traits) were used. Nearly 36% of the species assessed had “high” or “very high” vulnerability. Benthic species were ranked the most vulnerable (gastropod and bivalve species). The pelagic group was the second most vulnerable; the Pacific chub mackerel and the yellowfin tuna were amongst the most vulnerable pelagic species. The demersal group had the relatively lowest vulnerability. This study allowed identification of vulnerable fishery resources, research and monitoring priorities, and identification of the key exposure factors and sensitivity attributes which are driving that vulnerability. Our findings can help fishery managers incorporate climate change into harvest level and allocation decisions, and assist stakeholders plan for and adapt to a changing future.

Original languageEnglish
Article number4800
JournalScientific Reports
Volume12
Issue number1
DOIs
StatePublished - Dec 2022

UN SDGs

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

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

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