Please use this identifier to cite or link to this item: http://hdl.handle.net/10553/112857
Title: Differences in the occurrence and abundance of batoids across an oceanic archipelago using complementary data sources: Implications for conservation
Authors: Tuya Cortés, Fernando José 
Aguilar, Ricardo
Espino Rodríguez, Fernando 
Bosch Guerra, Néstor Echedey 
Meyers, Eva K.M.
Jiménez Alvarado, David 
Castro Hernández, José Juan 
Otero Ferrer, Francisco 
Haroun Tabraue, Ricardo Jesús 
UNESCO Clasification: 251001 Oceanografía biológica
240119 Zoología marina
Keywords: Atlantic Ocean
Chondrichthyes
Elasmobranchs
Island Biogeography
Macroecology, et al
Issue Date: 2021
Journal: Ecology and Evolution 
Abstract: Batoids, distributed from shallow to abyssal depths, are considerably vulnerable to anthropogenic threats. Data deficiencies on the distribution patterns of batoids, however, challenge their effective management and conservation. In this study, we took advantage of the particular geological and geomorphological configuration of the Canary Islands, across an east-to-west gradient in the eastern Atlantic Ocean, to assess whether patterns in the occurrence and abundance of batoids varied between groups of islands (western, central, and eastern). Data were collected from shallow (<40 m, via underwater visual counts and by a local community science program) and deep waters (60–700 m, via ROV deployments). Eleven species of batoids, assessed by the IUCN Red List of Threatened Species, were registered, including three “Critically Endangered” (Aetomylaeus bovinus, Dipturus batis, and Myliobatis aquila), three “Endangered” (Gymnura altavela, Mobula mobular, and Rostroraja alba), two “Vulnerable” (Dasyatis pastinaca and Raja maderenseis), and two “Data Deficient” (Taeniurops grabata and Torpedo marmorata). Also, a “Least Concern” species (Bathytoshia lata) was observed. Overall, batoids were ~1 to 2 orders of magnitude more abundant in the central and eastern islands, relative to the western islands. This pattern was consistent among the three sources of data and for both shallow and deep waters. This study, therefore, shows differences in the abundance of batoids across an oceanic archipelago, likely related to varying insular shelf area, availability of habitats, and proximity to the nearby continental (African) mass. Large variation in population abundances among islands suggests that “whole” archipelago management strategies are unlikely to provide adequate conservation. Instead, management plans should be adjusted individually per island and complemented with focused research to fill data gaps on the spatial use and movements of these iconic species.
URI: http://hdl.handle.net/10553/112857
ISSN: 2045-7758
DOI: 10.1002/ece3.8290
Source: Ecology and Evolution [EISSN 2045-7758], v. 11 (23), p. 16704-16715, (Noviembre 2021)
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