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Overfishing and climate change elevate extinction risk of endemic sharks and rays in the southwest Indian Ocean hotspot
by
Kyne, Peter M.
, Fennessy, Sean T.
, Fernando, Stela
, Dulvy, Nicholas K.
, Pollock, Caroline M.
, Bennett, Rhett H.
, McCord, Meaghen E.
, Gledhill, Katie S.
, Jabado, Rima W.
, Cheok, Jessica
, Kuguru, Baraka
, Pollom, Riley A.
, Rigby, Cassandra L.
, Herman, Katelyn B.
, Pacoureau, Nathan
, Ebert, David A.
, Samoilys, Melita
, Leslie, Robin W.
, da Silva, Charlene
, Winker, Henning
in
Animals
/ Biodiversity
/ Biodiversity hot spots
/ Biogeography
/ Biology and Life Sciences
/ Bycatch
/ Climate Change
/ Climatic changes
/ Coastal waters
/ Coasts
/ Conservation of Natural Resources
/ Data collection
/ Ecological function
/ Ecology and Environmental Sciences
/ Ecosystem
/ Ecosystem management
/ Ecosystems
/ Endangered & extinct species
/ Endangered populations
/ Endangered Species
/ Endemic species
/ Extinction
/ Extinction (Biology)
/ Extinction, Biological
/ Fish populations
/ Fisheries
/ Fisheries management
/ Fishes
/ Forecasts and trends
/ Indian Ocean
/ Industrial development
/ Influence
/ Ocean
/ Oceans
/ Overfishing
/ People and places
/ Protection and preservation
/ Rays (Fishes)
/ Risk
/ Sharks
/ Sharks - physiology
/ Skates, Fish
/ Species extinction
/ Stingrays
/ Sustainability management
/ Taxonomy
/ Thinning
/ Threatened species
/ Wildlife conservation
2024
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Overfishing and climate change elevate extinction risk of endemic sharks and rays in the southwest Indian Ocean hotspot
by
Kyne, Peter M.
, Fennessy, Sean T.
, Fernando, Stela
, Dulvy, Nicholas K.
, Pollock, Caroline M.
, Bennett, Rhett H.
, McCord, Meaghen E.
, Gledhill, Katie S.
, Jabado, Rima W.
, Cheok, Jessica
, Kuguru, Baraka
, Pollom, Riley A.
, Rigby, Cassandra L.
, Herman, Katelyn B.
, Pacoureau, Nathan
, Ebert, David A.
, Samoilys, Melita
, Leslie, Robin W.
, da Silva, Charlene
, Winker, Henning
in
Animals
/ Biodiversity
/ Biodiversity hot spots
/ Biogeography
/ Biology and Life Sciences
/ Bycatch
/ Climate Change
/ Climatic changes
/ Coastal waters
/ Coasts
/ Conservation of Natural Resources
/ Data collection
/ Ecological function
/ Ecology and Environmental Sciences
/ Ecosystem
/ Ecosystem management
/ Ecosystems
/ Endangered & extinct species
/ Endangered populations
/ Endangered Species
/ Endemic species
/ Extinction
/ Extinction (Biology)
/ Extinction, Biological
/ Fish populations
/ Fisheries
/ Fisheries management
/ Fishes
/ Forecasts and trends
/ Indian Ocean
/ Industrial development
/ Influence
/ Ocean
/ Oceans
/ Overfishing
/ People and places
/ Protection and preservation
/ Rays (Fishes)
/ Risk
/ Sharks
/ Sharks - physiology
/ Skates, Fish
/ Species extinction
/ Stingrays
/ Sustainability management
/ Taxonomy
/ Thinning
/ Threatened species
/ Wildlife conservation
2024
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Overfishing and climate change elevate extinction risk of endemic sharks and rays in the southwest Indian Ocean hotspot
by
Kyne, Peter M.
, Fennessy, Sean T.
, Fernando, Stela
, Dulvy, Nicholas K.
, Pollock, Caroline M.
, Bennett, Rhett H.
, McCord, Meaghen E.
, Gledhill, Katie S.
, Jabado, Rima W.
, Cheok, Jessica
, Kuguru, Baraka
, Pollom, Riley A.
, Rigby, Cassandra L.
, Herman, Katelyn B.
, Pacoureau, Nathan
, Ebert, David A.
, Samoilys, Melita
, Leslie, Robin W.
, da Silva, Charlene
, Winker, Henning
in
Animals
/ Biodiversity
/ Biodiversity hot spots
/ Biogeography
/ Biology and Life Sciences
/ Bycatch
/ Climate Change
/ Climatic changes
/ Coastal waters
/ Coasts
/ Conservation of Natural Resources
/ Data collection
/ Ecological function
/ Ecology and Environmental Sciences
/ Ecosystem
/ Ecosystem management
/ Ecosystems
/ Endangered & extinct species
/ Endangered populations
/ Endangered Species
/ Endemic species
/ Extinction
/ Extinction (Biology)
/ Extinction, Biological
/ Fish populations
/ Fisheries
/ Fisheries management
/ Fishes
/ Forecasts and trends
/ Indian Ocean
/ Industrial development
/ Influence
/ Ocean
/ Oceans
/ Overfishing
/ People and places
/ Protection and preservation
/ Rays (Fishes)
/ Risk
/ Sharks
/ Sharks - physiology
/ Skates, Fish
/ Species extinction
/ Stingrays
/ Sustainability management
/ Taxonomy
/ Thinning
/ Threatened species
/ Wildlife conservation
2024
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Overfishing and climate change elevate extinction risk of endemic sharks and rays in the southwest Indian Ocean hotspot
Journal Article
Overfishing and climate change elevate extinction risk of endemic sharks and rays in the southwest Indian Ocean hotspot
2024
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Overview
Here, we summarise the extinction risk of the sharks and rays endemic to coastal, shelf, and slope waters of the southwest Indian Ocean and adjacent waters (SWIO+, Namibia to Kenya, including SWIO islands). This region is a hotspot of endemic and evolutionarily distinct sharks and rays. Nearly one-fifth ( n = 13 of 70, 18.6%) of endemic sharks and rays are threatened, of these: one is Critically Endangered, five are Endangered, and seven are Vulnerable. A further seven (10.0%) are Near Threatened, 33 (47.1%) are Least Concern, and 17 (24.3%) are Data Deficient. While the primary threat is overfishing, there are the first signs that climate change is contributing to elevated extinction risk through habitat reduction and inshore distributional shifts. By backcasting their status, few endemic species were threatened in 1980, but this changed soon after the emergence of targeted shark and ray fisheries. South Africa has the highest national conservation responsibility, followed by Mozambique and Madagascar. Yet, while fisheries management and enforcement have improved in South Africa over recent decades, substantial improvements are urgently needed elsewhere. To avoid extinction and ensure robust populations of the region’s endemic sharks and rays and maintain ecosystem functionality, there is an urgent need for the strict protection of Critically Endangered and Endangered species and sustainable management of Vulnerable, Near Threatened, and Least Concern species, underpinned by species-level data collection and reduction of incidental catch.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
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