The rostral micro‐tooth morphology of blue marlin, Makaira nigricans

Author:

Pacher Korbinian12ORCID,Breuker Michael3ORCID,Hansen Matthew J.2ORCID,Kurvers Ralf H. J. M.45,Häge Jan6ORCID,Dhellemmes Felicie12ORCID,Domenici Paolo78,Steffensen John F.9,Krause Stefan3ORCID,Hildebrandt Thomas10,Fritsch Guido10,Bach Pascal1112,Sabarros Philippe S.1112,Zaslansky Paul13,Mahlow Kristin14ORCID,Müller Johannes14,Armas Rogelio González15ORCID,Ortiz Hector Villalobos15,Galván‐Magaña Felipe15ORCID,Krause Jens125

Affiliation:

1. Faculty of Life Sciences Humboldt‐Universität zu Berlin Berlin Germany

2. Department of Biology and Ecology of Fishes Leibniz‐Institute of Freshwater Ecology and Inland Fisheries Berlin Germany

3. Department of Electrical Engineering and Computer Science Lübeck University of Applied Sciences Lübeck Germany

4. Center for Adaptive Rationality Max Planck Institute for Human Development Berlin Germany

5. Excellence Cluster Science of Intelligence Technische Universität Berlin Berlin Germany

6. Institute of Biotechnology HiLIFE, University of Helsinki Helsinki Finland

7. CNR‐IBF Istituto di Biofisica Pisa Italy

8. CNR‐IAS Istituto per lo studio degli impatti Antropici e Sostenibilità in ambiente marino Oristano Italy

9. Marine Biological Section University of Copenhagen Helsingør Denmark

10. Leibniz Institute for Zoo and Wildlife Research Berlin Germany

11. MARBEC Univ Montpellier, CNRS, Ifremer, IRD Sète France

12. Institut de Recherche pour le Développement Sète France

13. Department for Operative and Preventive Dentistry Centrum für Zahn‐, Mund‐ und Kieferheilkunde, Charité‐Universitätsmedizin Berlin Berlin Germany

14. Museum für Naturkunde Leibniz‐Institut für Evolutions‐ und Biodiversitätsforschung Berlin Germany

15. Departamento de Pesquerías y Biología Marina Centro Interdisciplinario de Ciencias Marinas (CICIMAR‐IPN), Instituto Politécnico Nacional La Paz Mexico

Abstract

AbstractBillfish rostra potentially have several functions; however, their role in feeding is unequivocal in some species. Recent work linked morphological variation in rostral micro‐teeth to differences in feeding behavior in two billfish species, the striped marlin (Kajikia audax) and the sailfish (Istiophorus platypterus). Here, we present the rostral micro‐tooth morphology for a third billfish species, the blue marlin (Makaira nigricans), for which the use of the rostrum in feeding behavior is still undocumented from systematic observations in the wild. We measured the micro‐teeth on rostrum tips of blue marlin, striped marlin, and sailfish using a micro–computed tomography approach and compared the tooth morphology among the three species. This was done after an analysis of video‐recorded hunting behavior of striped marlin and sailfish revealed that both species strike prey predominantly with the first third of the rostrum, which provided the justification to focus our analysis on the rostrum tips. In blue marlin, intact micro‐teeth were longer compared to striped marlin but not to sailfish. Blue marlin had a higher fraction of broken teeth than both striped marlin and sailfish, and broken teeth were distributed more evenly on the rostrum. Micro‐tooth regrowth was equally low in both marlin species but higher in sailfish. Based on the differences and similarities in the micro‐tooth morphology between the billfish species, we discuss potential feeding‐related rostrum use in blue marlin. We put forward the hypothesis that blue marlin might use their rostra in high‐speed dashes as observed in striped marlin, rather than in the high‐precision rostral strikes described for sailfish, possibly focusing on larger prey organisms.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

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