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Long-distance movement of a lone short-beaked common dolphin Delphinus delphis in the central Mediterranean Sea

Published online by Cambridge University Press:  23 February 2012

Tilen Genov*
Affiliation:
Morigenos Marine Mammal Research & Conservation Society, Jarška cesta 36/a, 1000 Ljubljana, Slovenia
Giovanni Bearzi
Affiliation:
Tethys Research Institute, Viale G.B. Gadio 2, 20121 Milan, Italy Dolphin Biology & Conservation, Collebaldo 40, 06066 Piegaro PG, Italy
Silvia Bonizzoni
Affiliation:
Tethys Research Institute, Viale G.B. Gadio 2, 20121 Milan, Italy Dolphin Biology & Conservation, Collebaldo 40, 06066 Piegaro PG, Italy
Milena Tempesta
Affiliation:
WWF Italy, Miramare Marine Protected Area, Viale Miramare 349, 34151 Grignano, Trieste, Italy
*
Correspondence should be addressed to: T. Genov, Morigenos, Jarska cesta 36/a, 1000 Ljubljana, Slovenia email: tilen.genov@gmail.com

Abstract

While short-beaked common dolphins are often regarded as highly mobile animals, their movements and ranging patterns are poorly known and no long-distance movements have been documented through photo-identification of individuals. We report the long-distance movement of a naturally marked individual, encompassing a minimum of 1000 km across the Ionian and the Adriatic Seas, and the subsequent behaviour and site fidelity of the same individual, in association with a calf, in and around the commercial port of Monfalcone, northern Adriatic Sea. This is the longest documented movement for any individual of this species, worldwide.

Type
Research Article
Copyright
Copyright © Marine Biological Association of the United Kingdom 2012

INTRODUCTION

The short-beaked common dolphin Delphinus delphis (hereinafter ‘common dolphin’) has faced a major decline in abundance and distribution in the Mediterranean Sea in recent decades (Bearzi et al., Reference Bearzi, Reeves, Notarbartolo di Sciara, Politi, Cañadas, Frantzis and Mussi2003). In the coastal waters of Greece, a local population of common dolphins inhabiting the Inner Ionian Sea Archipelago has undergone a decline from around 150 animals in 1996 to only about 15 in 2007 (Bearzi et al., Reference Bearzi, Agazzi, Gonzalvo, Costa, Bonizzoni, Politi, Piroddi and Reeves2008), likely due to prey depletion resulting from overfishing (Bearzi et al., Reference Bearzi, Agazzi, Gonzalvo, Bonizzoni, Costa and Petroselli2010; Gonzalvo et al., Reference Gonzalvo, Moutopoulos, Bearzi and Stergiou2010; Piroddi et al., Reference Piroddi, Bearzi and Christensen2010). In the northern Adriatic Sea, common dolphins were historically abundant but had virtually vanished by the 1970s (Bearzi et al., Reference Bearzi, Reeves, Notarbartolo di Sciara, Politi, Cañadas, Frantzis and Mussi2003, Reference Bearzi, Holcer and Notarbartolo di Sciara2004).

While common dolphins are often regarded as highly mobile animals, their movements and ranging patterns are poorly known (Natoli et al., Reference Natoli, Cañadas, Peddemors, Aguilar, Vaquero, Fernandez-Piqueras and Hoelzel2006; Mirimin et al., Reference Mirimin, Westgate, Rogan, Rosel, Read, Coughlan and Cross2009). To our knowledge, no long-distance movements have been documented through photo-identification of individually identifiable animals. This paper reports: (1) the long-distance movement of a naturally marked individual, encompassing a minimum of 1000 km across the Ionian and the Adriatic Seas; and (2) the subsequent behaviour and site fidelity of the same individual, in association with a calf, in and around the commercial port of Monfalcone, northern Adriatic Sea.

METHODS AND RESULTS

In June 2010, an adult–calf pair of common dolphins—the adult a presumed mother—was observed in the port of Monfalcone, an industrial town near Trieste (northern Adriatic Sea, 45047′N 13033′E; Figure 1). These dolphins were repeatedly sighted there between June 2010 and January 2011, in an area of 1.2 km2. High-quality digital photographs of the dorsal fin of both animals were taken for individual photo-identification (Würsig & Jefferson, Reference Würsig, Jefferson, Hammond, Mizroch and Donovan1990) and video footage was obtained on some occasions. The adult appeared in good physical condition, with no evidence of injuries, malnutrition or skin disease based on images of its dorsum. The calf—about half the length of the adult—initially appeared in good condition but started showing signs of emaciation by January 2011. It was estimated to be about one year old at the beginning of the observation period, based on a comparison with photographs of animals of known age taken in the Ionian Sea. In February 2011, the calf disappeared. After this, the adult was absent from the port on several occasions and could not be found in the adjacent waters within a 6 km radius. However, the animal returned to the port occasionally between February and May 2011. In May 2011, the adult was filmed 4.5 km from Monfalcone. In June, July and August 2011 it was observed repeatedly between Monfalcone and the city of Trieste (22 km south-east of Monfalcone), within 1 km of the coast. During some encounters, both inside and outside of the port, the animal was quite active, performing bowriding, leaps, breaches, side-slaps, tail-slaps and carrying jellyfish Rhizostoma pulmo between its pectoral fins while swimming belly-up at the surface. Some of the observed behaviours were suggestive of foraging and playing.

Fig. 1. Minimum distance travelled by the adult common dolphin, with some of the locations cited in the text.

A comparison with a catalogue of 171 naturally marked common dolphins from the Inner Ionian Sea Archipelago, Greece (Bearzi et al., Reference Bearzi, Agazzi, Gonzalvo, Costa, Bonizzoni, Politi, Piroddi and Reeves2008), revealed that the adult was encountered there in August 2008, in a group composed of eight adults and one calf. Although most photo-identified animals in the Inner Ionian Sea Archipelago were sighted regularly, this particular animal was encountered in that area only once. If moving in a straight line, the animal would have travelled a minimum of 1000 km between the two sites (Figure 1). This is the longest documented movement for any individual of this species, worldwide.

DISCUSSION

Common dolphins are generally thought to be wide-ranging. For example, a radio-tagged female common dolphin off the coast of California travelled at least 500 km in 10 days (Evans, Reference Evans1982). Genetic studies of common dolphins in the Mediterranean Sea and North Atlantic Ocean further support the notion that these animals perform long-distance movements (Natoli et al., Reference Natoli, Cañadas, Peddemors, Aguilar, Vaquero, Fernandez-Piqueras and Hoelzel2006). However, such movements have never been documented based on individual photo-identification, probably due to scarce application of this method to common dolphins (Neumann et al., Reference Neumann, Leitenberger and Orams2002; Bearzi et al., Reference Bearzi, Bonizzoni, Agazzi, Gonzalvo and Currey2011).

In most mammals dispersal is biased towards males (Greenwood, Reference Greenwood1980). Females are usually philopatric while males tend to disperse. As revealed by genetics, this also appears to be the case in at least some populations of common bottlenose dolphins Tursiops truncatus (Möller & Beheregaray, Reference Möller and Beheregaray2004), but not in others (Natoli et al., Reference Natoli, Birkun, Aguilar, Lopez and Hoelzel2005). Genetic studies of short-beaked common dolphins from the Mediterranean and North Atlantic showed no marked differences in dispersal between sexes (Natoli et al., Reference Natoli, Cañadas, Peddemors, Aguilar, Vaquero, Fernandez-Piqueras and Hoelzel2006, Reference Natoli, Cañadas, Vaquero, Politi, Fernandez-Navarro and Hoelzel2008).

The observation reported here refers to an individual that moved to a part of the Mediterranean Sea—the northern Adriatic Sea—where the species no longer occurs (Kryštufek & Lipej, Reference Kryštufek and Lipej1993; Bearzi et al., Reference Bearzi, Holcer and Notarbartolo di Sciara2004; Genov et al., Reference Genov, Kotnjek, Lesjak, Hace and Fortuna2008). Additionally, this particular animal seems to have settled in a port for several months. Such behaviour is atypical for this species. Bottlenose dolphins frequently approach and enter ports and a number of single individuals have taken residence in urban areas (Lockyer, Reference Lockyer, Leatherwood and Reeves1990; Eisfeld et al., Reference Eisfeld, Simmonds and Stansfield2010). Common dolphins, however, have rarely been reported to do that. One case involved the presence of two long-beaked common dolphins D. capensis in two small bays on the central coast of Chile for 10 years (Bernal et al., Reference Bernal, Olavarría and Moraga2003). Given the circumstances, care must be taken in interpreting and assessing the ecological significance of the reported long-distance movement for Mediterranean common dolphins on the whole.

Still, this study indicates the value and the potential of photo-identification to gain insights into common dolphin movement and ranging patterns. Comparisons among the existing common dolphin photo-identification catalogues would therefore be worthwhile and may provide further insight.

ACKNOWLEDGEMENTS

We are grateful to Tina Centrih, Tommaso De Lorenzi, Sibilla Gerin, Ana Hace, Polona Kotnjek and Karin Schlappa for their help with field data collection. Annalise Petroselli took photographs of the adult common dolphin in the Inner Ionian Sea Archipelago. David Janiger helped with the literature. Ada Natoli, Bill Perrin, Karen Stockin and Ben Wilson provided useful comments and suggestions that helped improve the manuscript. We would also like to thank Ana Rita Amaral, Maddalena Bearzi, Simon Berrow, Massimo Celio, Saul Ciriaco, Antonio Codarin, Lisa Faresi, Erik Merson, Enrico Vinzi, ARPA FVG and the Coast Guards of Trieste and Monfalcone.

References

REFERENCES

Bearzi, G., Agazzi, S., Gonzalvo, J., Bonizzoni, S., Costa, M. and Petroselli, A. (2010) Biomass removal by dolphins and fisheries in a Mediterranean Sea coastal area: do dolphins have an ecological impact on fisheries? Aquatic Conservation: Marine and Freshwater Ecosystems 20, 549559.CrossRefGoogle Scholar
Bearzi, G., Agazzi, S., Gonzalvo, J., Costa, M., Bonizzoni, S., Politi, E., Piroddi, C. and Reeves, R.R. (2008) Overfishing and the disappearance of short-beaked common dolphins from western Greece. Endangered Species Research 5, 112.CrossRefGoogle Scholar
Bearzi, G., Bonizzoni, S., Agazzi, S., Gonzalvo, J. and Currey, R.J.C. (2011) Striped dolphins and short-beaked common dolphins in the Gulf of Corinth, Greece: abundance estimates from dorsal fin photographs. Marine Mammal Science 27, E165E184.CrossRefGoogle Scholar
Bearzi, G., Holcer, D. and Notarbartolo di Sciara, G. (2004) The role of historical dolphin takes and habitat degradation in shaping the present status of northern Adriatic cetaceans. Aquatic Conservation: Marine and Freshwater Ecosystems 14, 363379.CrossRefGoogle Scholar
Bearzi, G., Reeves, R.R., Notarbartolo di Sciara, G., Politi, E., Cañadas, A., Frantzis, A. and Mussi, B. (2003) Ecology, status and conservation of short-beaked common dolphins Delphinus delphis in the Mediterranean Sea. Mammal Review 33, 224252.CrossRefGoogle Scholar
Bernal, R., Olavarría, C. and Moraga, R. (2003) Occurrence and long-term residency of two long-beaked common dolphins, Delphinus capensis (Gray 1828), in adjacent small bays on the Chilean central coast. Aquatic Mammals 29, 396399.CrossRefGoogle Scholar
Eisfeld, S., Simmonds, M. and Stansfield, L. (2010) Behavior of a solitary sociable female bottlenose dolphin (Tursiops truncatus) off the coast of Kent, south-east England. Journal of Applied Animal Welfare Science 13, 3145.CrossRefGoogle Scholar
Evans, Q. (1982) Distribution and differentiation of stocks of Delphinus delphis Linnaeus in the northeastern Pacific. In Mammals in the Seas: Small cetaceans, seals, sirenians, and otters, Volume 5. Rome: FAO, pp. 4566.Google Scholar
Genov, T., Kotnjek, P., Lesjak, J., Hace, A. and Fortuna, C.M. (2008) Bottlenose dolphins (Tursiops truncatus) in Slovenian and adjacent waters (northern Adriatic Sea). Annales, Series Historia Naturalis 18, 227244.Google Scholar
Gonzalvo, J., Moutopoulos, D.K., Bearzi, G. and Stergiou, K.I. (2010) Fisheries mismanagement in a Natura 2000 area in western Greece. Fisheries Management and Ecology 18, 2538.CrossRefGoogle Scholar
Greenwood, P.J. (1980) Mating systems, philopatry and dispersal in birds and mammals. Animal Behaviour 28, 140162.CrossRefGoogle Scholar
Kryštufek, B. and Lipej, L. (1993) Kiti (Cetacea) v severnem Jadranu. Annales, Series Historia Naturalis 3, 920.Google Scholar
Lockyer, C. (1990) Review of incidents involving wild, sociable dolphins, worldwide. In Leatherwood, S. and Reeves, R.R. (eds) The bottlenose dolphin. San Diego, CA: Academic Press, pp. 337353.CrossRefGoogle Scholar
Mirimin, L., Westgate, A., Rogan, E., Rosel, P., Read, A., Coughlan, J. and Cross, T. (2009) Population structure of short-beaked common dolphins (Delphinus delphis) in the North Atlantic Ocean as revealed by mitochondrial and nuclear genetic markers. Marine Biology 156, 821834.CrossRefGoogle Scholar
Möller, L.M. and Beheregaray, L.B. (2004) Genetic evidence for sex-biased dispersal in resident bottlenose dolphins (Tursiops aduncus). Molecular Ecology 13, 16071612.CrossRefGoogle ScholarPubMed
Natoli, A., Birkun, A., Aguilar, A., Lopez, A. and Hoelzel, A.R. (2005) Habitat structure and the dispersal of male and female bottlenose dolphins (Tursiops truncatus). Proceedings of the Royal Society B: Biological Sciences 272, 12171226.CrossRefGoogle ScholarPubMed
Natoli, A., Cañadas, A., Peddemors, V.M., Aguilar, A., Vaquero, C., Fernandez-Piqueras, P. and Hoelzel, A.R. (2006) Phylogeography and alpha taxonomy of the common dolphin (Delphinus sp.). Journal of Evolutionary Biology 19, 943954.CrossRefGoogle ScholarPubMed
Natoli, A., Cañadas, A., Vaquero, C., Politi, E., Fernandez-Navarro, P. and Hoelzel, A.R. (2008) Conservation genetics of the short-beaked common dolphin (Delphinus delphis) in the Mediterranean Sea and in the eastern North Atlantic Ocean. Conservation Genetics 9, 14791487.CrossRefGoogle Scholar
Neumann, D.R., Leitenberger, A. and Orams, M.B. (2002) Photo-identification of short-beaked common dolphins (Delphinus delphis) in north-east New Zealand: a photo-catalogue of recognisable individuals. New Zealand Journal of Marine and Freshwater Research 36, 593604.CrossRefGoogle Scholar
Piroddi, C., Bearzi, G. and Christensen, V. (2010) Effects of local fisheries and ocean productivity on the north-eastern Ionian Sea ecosystem. Ecological Modelling 221, 15261544.CrossRefGoogle Scholar
Würsig, B. and Jefferson, T.A. (1990) Methods of photo-identification for small cetaceans. In Hammond, P.S., Mizroch, S.A. and Donovan, G.P. (eds) Individual recognition of cetaceans: use of photo-identification and other techniques to estimate population parameters. Report of the International Whaling Commission, Special Issue 12, Cambridge, UK, pp. 4352.Google Scholar
Figure 0

Fig. 1. Minimum distance travelled by the adult common dolphin, with some of the locations cited in the text.