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Post-2020 Kunming 30% target can easily protect all endemic sharks and rays in the Western Indian Ocean and more
by
Ebert, David A
, Jabado, Rima W
, Dulvy, Nicholas K
, Cheok, Jessica
in
Biodiversity
/ Biodiversity hot spots
/ Conservation
/ Cooperation
/ Ecology
/ Geographical distribution
/ International cooperation
/ Management
/ Oceans
/ Protected areas
/ Species
2021
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Post-2020 Kunming 30% target can easily protect all endemic sharks and rays in the Western Indian Ocean and more
by
Ebert, David A
, Jabado, Rima W
, Dulvy, Nicholas K
, Cheok, Jessica
in
Biodiversity
/ Biodiversity hot spots
/ Conservation
/ Cooperation
/ Ecology
/ Geographical distribution
/ International cooperation
/ Management
/ Oceans
/ Protected areas
/ Species
2021
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Do you wish to request the book?
Post-2020 Kunming 30% target can easily protect all endemic sharks and rays in the Western Indian Ocean and more
by
Ebert, David A
, Jabado, Rima W
, Dulvy, Nicholas K
, Cheok, Jessica
in
Biodiversity
/ Biodiversity hot spots
/ Conservation
/ Cooperation
/ Ecology
/ Geographical distribution
/ International cooperation
/ Management
/ Oceans
/ Protected areas
/ Species
2021
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Post-2020 Kunming 30% target can easily protect all endemic sharks and rays in the Western Indian Ocean and more
Paper
Post-2020 Kunming 30% target can easily protect all endemic sharks and rays in the Western Indian Ocean and more
2021
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Overview
Summary Sharks and rays are possibly the most threatened Class of marine fishes and their declines can be halted if protected areas are optimised to benefit these species. We identify spatial priorities for all 63 endemic sharks and rays in the marine biodiversity hotspot, the Western Indian Ocean (WIO). Collectively, while the WIO nations currently surpass the 10% Aichi ocean protection target, this amounts to a dismal protection of only 1.57% of each species’ distribution range. We show that the entire ranges of all endemics can be achieved by protecting 11% of EEZs of WIO nations, well within reach of the new 30% of oceans by 2030 target. Regional management bodies exist, which if taken advantage of to implement shark and ray management, provide opportunities to implement more efficient management across the region. We recommend key management actions to implement and explicit incentivisation of international cooperation in the post-2020 biodiversity framework. Science for Society The past decade has seen massive growth in the establishment of marine protected areas (MPAs), driven by the Aichi biodiversity target of protecting 10% of all ocean areas. This expansion of MPAs, however, has largely occurred in areas residual to extractive uses, often coinciding with less threatened areas of lower conservation value. This coming decade will see a further push to ensure 30% of the oceans are protected by 2030. It is important to understand how existing and future MPAs should be placed to benefit threatened biodiversity. Currently this is unclear for sharks and rays, comprising a species group that is the most evolutionarily distinct vertebrate radiation in the world and also one of the most threatened. We identify both regional and national conservation priorities for expanding marine protected areas to benefit all 63 endemic sharks and rays occurring in the Western Indian Ocean region. We find that the region has already exceeded the 10% ocean protection target, but this amounts to an average of only 1.57% protection of the distribution ranges of these species. We show that protecting the top 10% priority sites will conserve almost half of the geographic range of each species yet require only 1.16% of the total EEZ – a tiny fraction of the 30% by 2030 target. We also show that regional collaboration among all nations can result in more spatially efficient conservation priorities. We recommend that the post-2020 biodiversity framework needs to explicitly incentivise regional cooperation between nations to efficiently achieve urgent targets and maximise benefits to biodiversity. Competing Interest Statement The authors have declared no competing interest.
Publisher
Cold Spring Harbor Laboratory Press,Cold Spring Harbor Laboratory
Subject
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