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Geographic and ontogenetic variation in the diet of two commonly exploited batoids (Chilean eagle ray and Pacific guitarfish) off Peru: evidence of trophic plasticity

  • ,
  • Pro Delphinus
    ,
  • California State University Long Beach
    ,
  • Instituto del Mar del Perú
    ,
  • Universidad Nacional San Luis Gonzaga de Ica
    ,
  • Universidad Católica de la Santísima Concepción
Research Output:
Contribution to journal
Article
Peer-review

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 1525-1540 (16 pages)

Journal (Volume, Issue Number)

Environmental Biology of Fishes (Volume 104, Issue 12)

Publication milestones

  • Accepted/In press - 2021
  • Published - 12/2021

Publication status

Published - 12/2021

ISSN

0378-1909

Publication IDs

  • Scopus: 85119270720

Abstract

This study provides information about the diet across geographic areas and throughout ontogeny and sex of two coastal and commercial batoid species in Peru (Chilean eagle ray Myliobatis chilensis and Pacific guitarfish Pseudobatos planiceps). Data was collected in the central coast (13°30′S to 14°30′S; Pisco district, Lima) and in the northern coast (13°12′S to 13°49′S; San Jose district, Lambayeque) off Peru during the second semester of the years 2015 and 2016 (i.e., winter and spring) in an El Niño event. A total of 357 stomach contents were analyzed in northern and central Peru with different oceanographic and ecological conditions. In the central coast, M. chilensis showed a high trophic position (tertiary consumer) due to its high consumption of Peruvian anchoveta (Engraulis ringens), while P. planiceps had a lower trophic position (secondary consumer) and a less specialized diet of benthic invertebrates (i.e., crustaceans and mollusks) and pelagic fish (e.g., E. ringens). In the northern coast, both species preyed mainly upon benthic invertebrates and to a lesser degree on fish; therefore, their trophic position was lower. Dietary variation was influenced by species, geographic location, and ontogeny. The diet variability between geographic locations shows insights of these batoids’ trophic plasticity and opportunistic feeding behavior in response to differences in the local prey availability, an effect that may be amplified during the El Niño–Southern Oscillation (ENSO). The spatial variation in this species diet may indicate that they play different ecological roles in distinct environments. This study contributes to the scarce literature about batoids’ ecology in the southeast Pacific Ocean and presents novel information on habitat-specific diet composition.

Funding Details

We thank the Pisco Coastal Laboratory of IMARPE and Universidad Cientifica del Sur for facilitating the laboratories to examine the collected samples. We extend our gratitude to the Pisco and San Jose fishermen for allowing access to their catches. We thank Fabian Brondi for the support in creating the maps, and Victor Moscoso for his contribution on identifying crustacean species. The research leading to these results received funding from Fondo para la Innovación, la Ciencia y la Tecnologia under Grant Agreement No PIBA-369-2014.
FundersFunding numbers
Fondo para la Innovación, la Ciencia y la Tecnologia
PIBA-369-2014
Universidad Cientifica del Sur
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