Location-specific factors affecting dolphin group size dynamics in southern US coastal waters

Dataset extent

Abstract

Group size dynamics represent a complex aspect of the ecology of social predators such as the common bottlenose dolphin. Group sizes of dolphins are often strongly influenced by the local environment, but the location-specific effects of these factors on group sizes are poorly understood. Here, we compared dolphin occurrence and group size variation between two adjacent but geomorphologically distinct estuaries along the southern U.S. coast. The larger Mobile Bay (MOB) estuary had larger dolphin groups, especially in summer compared to the smaller enclosed estuary of Perdido Bay (PER), where group sizes remained similar between seasons. In both areas, groups with young dolphins had more adults and occurred in higher-salinity waters. Water temperature and the presence of young dolphins were common ecological drivers influencing group size in both embayments. Additionally, in MOB proximity to Mobile Pass (connecting Mobile Bay to open water) and distance to gillnet exclusion zones were key factors driving group sizes, whereas in PER distance to shrimping regulation zones affected dolphin group size. These findings suggest dolphin group sizes are shaped by a combination of local population demographics and environmental attributes including geomorphology, salinity, temperature, and fishery activities, potentially reflecting behavioral strategies adapted to each location.

Research Permits

National Marine Fisheries Service (NMFS) Scientific Research Permit No. 23772 issued to Dauphin Island Sea Lab (DISL), and No. 21938 issued to SEFSC-NOAA. Research protocols used were approved by the Institutional Animal Care and Use Committee (IACUC) prior to data collection: NMFS Atlantic IACUC 2020-002.

Funding

Deepwater Horizon natural resource damage settlement funds provided by the Alabama Trustee Implementation Group with funding support and participation of Alabama Department of Conservation and Natural Resources (ADCNR).

DOI: 10.57778/w8gb-5858

Suggested Citation

Bouveroux, T., Cloyed, C., Sinclair, C., Barry, K., Mullin, K., & Carmichael, R. (2026). Location-specific factors affecting dolphin group size dynamics in southern US coastal waters [Data set]. Dauphin Island Sea Lab. https://doi.org/10.57778/W8GB-5858

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  • Alexander, R., Smith, R., Schwarz, G., Preston, S., Brakebill, J., Srinivasan, R., Pacheco, P.A., 2001. Atmospheric Nitrogen flux from the watersheds of major estuaries of the Unites States: An application of the SPARROW watershed model., in: Nitrogen Loading in Coastal Water Bodies: An Atmospheric Perspective, Coastal and Estuarine Studies. Washington DC: American Geophysical Union, pp. 119–170.

  • Allee, W.C., 1927. Animal Aggregations. Quartely Rev. Biol. 2, 367–398. https://doi.org/10.1086/394281

  • Auguin, E., Guinet, C., Mourier, J., Clua, E.E.G., Gasco, N., Tixier, P., 2025. The role of social transmission in the use of a new behaviour by killer whales in response to fisheries. Anim. Behav. 225, 123228. https://doi.org/10.1016/j.anbehav.2025.123228

  • Balmer, B., Watwood, S., Quigley, B., Speakman, T., Barry, K., Mullin, K., Rosel, P., Sinclair, C., Zolman, E., Schwacke, L., 2019. Common bottlenose dolphin (Tursiops truncatus) abundance and distribution patterns in St Andrew Bay, Florida, USA. Aquat. Conserv. Mar. Freshw. Ecosyst. 29, 486–498. https://doi.org/10.1002/aqc.3001

  • Bangley, C.W., Paramore, L., Shiffman, D.S., Rulifson, R.A., 2018. Increased abundance and nursery habitat use of the bull shark (Carcharhinus leucas) in response to a changing environment in a warm-temperate estuary. Sci. Rep. 8, 6018. https://doi.org/10.1038/s41598-018-24510-z

  • Bassos-Hull, K., Perrtree, R.M., Shepard, C.C., Schilling, S., Barleycorn, A.A., Allen, J.B., Balmer, B.C., Pine, W.E., Wells, R.S., 2013. Long-term site fidelity and seasonal abundance estimates of common bottlenose dolphins (Tursiops truncatus) along the southwest coast of Florida and responses to natural perturbations. J. Cetacean Res. Manage. 13, 19–30. https://doi.org/10.47536/jcrm.v13i1.551

  • Bearzi, G., Politi, E., Di Sciara, G. N., 1999. Diurnal behavior of free‐ranging bottlenose dolphins in the Kvarnerić (northern Adriatic Sea). Mar. Mar. Mamm. Sci. 15(4), 1065–1097. https://doi.org/10.1111/j.1748-7692.1999.tb00878.x

  • Bearzi, M., 2005. Aspects of the ecology and behaviour of bottlenose dolphins (Tursiops truncatus) in Santa Monica Bay, California. J. Cetacean Res. Manage. 7, 75–83. https://doi.org/10.47536/jcrm.v7i1.761

  • Bloodgood, J., Deming, A., Colegrove, K., Russell, M., Clark, C.D., Carmichael, R.H., 2023. Causes of death and pathogen prevalence in bottlenose dolphins Tursiops Truncatus stranded in Alabama, USA, between 2015 and 2020, following the Deepwater Horizon oil spill. Dis. Aquat. Organ. 155: 87–102. https://doi.org/10.3354/dao03746

  • Bonizzoni, S., Furey, N.B., Bearzi, G., 2021. Bottlenose dolphins (Tursiops truncatus) in the north‐western Adriatic Sea: Spatial distribution and effects of trawling. Aquat. Conserv. Mar. Freshw. Ecosyst. 31, 635–650. https://doi.org/10.1002/aqc.3433

  • Bouveroux, Th., Mallefet, J., 2010. Social structure of bottlenose dolphins, Tursiops truncatus, in Panama City, Florida. J. Mar. Biol. Assoc. U. K. 90, 1685–1692. https://doi.org/10.1017/S0025315409991251

  • Bouveroux, Th., Caputo, M., Froneman, P.W., Plön, S., 2018. Largest reported groups for the Indo-Pacific bottlenose dolphin (Tursiops aduncus) found in Algoa Bay, South Africa: Trends and potential drivers. Mar. Mamm. Sci. 34, 645–665. https://doi.org/10.1111/mms.12471

  • Bouveroux, Th., Sinclair, C., Barry, K., Clance, L., Hansen, J.J., Mullin, K.D., Rosel, P., Carmichael, R.H., 2025. Abundance and residency patterns of common bottlenose dolphins (Tursiops truncatus) in freshwater-influenced estuaries of the northern Gulf of Mexico. Aquat. Conserv. Mar. Freshw. Ecosyst. 35. https://doi.org/10.1002/aqc.70055

  • Bouveroux, Th., Cloyed, C.S., Barry, K., Mullin, K.D., Sinclair, C., Carmichael, R.H., Spatial distribution and habitat selection of common bottlenose dolphins (Tursiops truncatus) within two estuaries in the southern coastal USA. Sci. Rep. accepted.

  • Burnham, K.P., Anderson, D.R., 2004. Multimodel Inference: Understanding AIC and BIC in Model Selection. Sociol. Methods Res. 261–304. https://doi.org/10.1177/0049124104268644

  • Campbell, G.S., Bilgre, B.A., Defran, R.H., 2002. Bottlenose dolphins (Tursiops truncatus) in Turneffe Atoll, Belize: occurrence, site fidelity, group size, and abundance. Aquat. Mamm. 28.2, 170–180.

  • Centurelli, M., Biagiotti, I., Costantini, I., Leonori, I., 2025) Behavioral observations on the common bottlenose dolphin (Tursiops truncatus) at fixed points in the open waters of Italy’s Northern-Central Adriatic Sea. Ocean Coast. Manage. 262, 107555. https://doi.org/10.1016/j.ocecoaman.2025.107555

  • Chilvers, B.L., Corkeron, P.J., 2001. Trawling and bottlenose dolphins' social structure. Proc Biol Sci 1, 268(1479): 1901-1905. https://doi.org/10.1098/rspb.2001.1732

  • Cloyed, C.S., Balmer, B.C., Schwacke, L.H., Wells, R.S., Berens McCabe, E.J., Barleycorn, A.A., Allen, J.B., Rowles, T.K., Smith, C.R., Takeshita, R., Townsend, F.I., Tumlin, M.C., Zolman, E.S., Carmichael, R.H., 2021. Interaction between dietary and habitat niche breadth influences cetacean vulnerability to environmental disturbance. Ecosphere 12, e03759. https://doi.org/10.1002/ecs2.3759

  • Connor, R.C., Smolker, R.A., Richards, A.F., 1992. Two levels of alliance formation among male bottlenose dolphins (Tursiops sp.). Proc. Natl. Acad. Sci. 89, 987–990. https://doi.org/10.1073/pnas.89.3.987

  • Connor, R.C., Wells, R.S., Mann, J., Read, A., 2000. The bottlenose dolphins: Social relationships in a fission-fusion society. In Cetacean Societies:

  • Field Studies of Dolphins and Whales, 91–125. University of Chicago Press.

  • Coogan, J., Dzwonkowski, B., Lehrter, J., Park, K., Collini, R.C., 2021. Observations of dissolved oxygen variability and physical drivers in a shallow highly stratified estuary. Estuar. Coast. Shelf Sci. 259, 107482. https://doi.org/10.1016/j.ecss.2021.107482

  • Corkeron, P.J., Morris, R.J., Bryden, M.M., 1987. Interactions between bottlenose dolphins and sharks in Moreton Bay, Queensland. Aquat. Mam., 13(3), 109–113.

  • Creel, S., Schuette, P., Christianson, D., 2014. Effects of predation risk on group size, vigilance, and foraging behavior in an African ungulate community. Behav. Ecol. 25, 773–784. https://doi.org/10.1093/beheco/aru050

  • Díaz López, B., López, A., Methion, S., Covelo, P., 2018. Infanticide attacks and associated epimeletic behaviour in free-ranging common bottlenose dolphins (Tursiops truncatus). J. Mar. Biol. Assoc. U. K. 98, 1159–1167. https://doi.org/10.1017/S0025315417001266

  • Dormann, C.F., Elith, J., Bacher, S., Buchmann, C., Carl, G., Carré, G., Marquéz, J.R.G., Gruber, B., Lafourcade, B., Leitão, P.J., Münkemüller, T., McClean, C., Osborne, P.E., Reineking, B., Schröder, B., Skidmore, A.K., Zurell, D., Lautenbach, S., 2013. Collinearity: a review of methods to deal with it and a simulation study evaluating their performance. Ecography 36, 27–46. https://doi.org/10.1111/j.1600-0587.2012.07348.x

  • Drea, C.M., 2006. Studying primate learning in group contexts: Tests of social foraging, response to novelty, and cooperative problem solving. Methods, 38(3): 162-177.

  • Drymon, J.M., Ajemian, M.J., Powers, S.P., 2014. Distribution and dynamic habitat use of young bull sharks Carcharhinus leucas in a highly stratified northern Gulf of Mexico estuary. PLoS ONE 9, e97124.

  • Drymon, J.M., Jargowsky, A.E., Switzer, T.S., Hightower, C.L. Powers, S.P., 2025. Fishery-independent camera surveys provide novel observations of white sharks (Carcharodon carcharias) off coastal Alabama. Front. Mar. Sci. 12:1628084. https://doi:10.3389/fmars.2025.1628084

  • Dunning, K., Olivas, T., Camus, C., Henry, H., Gumbleton, S., Beckham, N., Willoughby, J.R., 2026. An analysis of the marine wildlife interactions with the commercial shrimping industry on the Alabama Gulf Coast. Fish. Res. 293: 107645. https://doi.org/10.1016/j.fishres.2025.107645

  • Ebensperger, L.A., Rivera, D.S., Hayes, L.D., 2012. Direct fitness of group living mammals varies with breeding strategy, climate and fitness estimates. J. Anim. Ecol. 81, 1013–1023. https://doi.org/10.1111/j.1365-2656.2012.01973.x

  • Elgar, M.A., 1989. Predator vigilance and group size in mammals and birds: A critical review of the empirical evidence. Biol. Rev. 64, 13–33. https://doi.org/10.1111/j.1469-185X.1989.tb00636.x

  • Fox, J., Weisberg, S., 2019. An R companion to applied regression, Third Edition. Sage.

  • Genov, T., Centrih, T., Kotnjek, P., Hace, A., 2019. Behavioural and temporal partitioning of dolphin social groups in the northern Adriatic Sea. Mar. Biol. 166, 11. https://doi.org/10.1007/s00227-018-3450-8

  • Gibson, Q.A., Mann, J., 2008. The size, composition and function of wild bottlenose dolphin (Tursiops sp.) mother–calf groups in Shark Bay, Australia. Anim. Behav. 76, 389–405. https://doi.org/10.1016/j.anbehav.2008.01.022

  • Greenman, J.T., Mcfee, W.E., 2023. A characterisation of common bottlenose dolphin (Tursiops truncatus) interactions with the commercial shrimp trawl fishery of South Carolina, USA. J. Cetacean Res. Manage. 14, 69–79. https://doi.org/10.47536/jcrm.v14i1.525

  • GULF, 2021. G.U.L.F. Alabama Shrimp Summary Action Plan. Audubon Nature Institute Gulf United for Lasting Fisheries (G.U.L.F.).

  • Gygax, L., 2002. Evolution of group size in the dolphins and porpoises: interspecific consistency of intraspecific patterns. Behav. Ecol. 13, 583–590. https://doi.org/10.1093/beheco/13.5.583

  • Hanson, M.T., Defran, R.H., 1993. The behavior and feeding ecology of the Pacific coast bottlenose dolphin, Tursiops truncatus. Aquat. Mamm. 19, 127–142.

  • Hebblewhite, M., Pletscher, D.H., 2002. Effects of elk group size on predation by wolves. Can. J. Zool. 80(5): 800-809. https://doi.org/10.1139/z02-059

  • Heithaus, M.R., 2001. Predator–prey and competitive interactions between sharks (order Selachii) and dolphins (suborder Odontoceti): a review. J. Zool. 253, 53–68. https://doi.org/10.1017/S0952836901000061

  • Heithaus, M.R., 2005. Habitat use and group size of pied cormorants (Phalacrocorax varius) in a seagrass ecosystem: Possible effects of food abundance and predation risk. Mar. Biol. 147: 27–35.

  • Heithaus, M.R., Dill, L.M., 2002. Food availability and tiger shark predation risk influence bottlenose dolphin habitat use. Ecology 83, 480–491.

  • Heithaus, M.R., Dill, L.M., 2009. Feeding strategies and tactics, in: The Encyclopedia of Marine Mammals, 2nd Edition. Academic Press, San Diego, pp. 414–423.

  • Henderson, E.E., Würsig, B., 2007. Behavior patterns of bottlenose dolphins in San Luis Pass, Texas. Gulf Mex. Sci. 25. https://doi.org/10.18785/goms.2502.06

  • Hoppitt, W., Laland, K. N., 2008. Social processes influencing learning in animals: A review of the evidence. Advances in the Study of Behavior, 38, 105-165.

  • King, S.L., Connor, R.C., Montgomery, S.H., 2022. Social and vocal complexity in bottlenose dolphins. Trends Neurosci. 45, 881–883. https://doi.org/10.1016/j.tins.2022.09.006

  • Kiszka, J.J., Woodstock, M.S., Heithaus, M.R., 2022. Functional roles and ecological importance of small cetaceans in aquatic ecosystems. Front. Mar. Sci. 9, 803173. https://doi.org/10.3389/fmars.2022.803173

  • Krause, J., Ruxton, G.D., 2002. Living in groups., P. H. Harvey and R. M. May. ed, Oxford series in ecology and evolution. Oxford University Press.

  • Krützen, M., Mann, J., Heithaus, M.R., Connor, R.C., Bejder, L., Sherwin, W.B., 2005. Cultural transmission of tool use in bottlenose dolphins. Proc. Natl. Acad. Sci. 102, 8939–8943. https://doi.org/10.1073/pnas.0500232102

  • La Manna, G., Ronchetti, F., Perretti, F., Ceccherelli, G., 2023. Areas of spatial overlap between common bottlenose dolphin, recreational boating, and small-scale fishery: management insights from modelling exercises. PeerJ. https://doi.org/10.7717/peerj.16111

  • Langen, T.A., Vehrencamp, S.A., 1998. Ecological factors affecting group and territory size in white-throated magpie-jays. The Auk, 115: 327–339.

  • Lima, S.L., 1995. Back to the basics of anti-predatory vigilance: the group-size effect. Anim. Behav. 49, 11–20. https://doi.org/10.1016/0003-3472(95)80149-9

  • Liu, C.Y., Berlin, J., Kiti, M.C., Del Fava, E., Grow, A., Zagheni, E., Melegaro, A., Jenness, S. M., Omer, S.B., Lopman, B., Nelson, K., 2021. Rapid Review of Social Contact Patterns During the COVID-19 Pandemic. Epidemiology (Cambridge, Mass.), 32(6): 781–791. https://doi.org/10.1097/EDE.0000000000001412.

  • Liu, Z., Lehrter, J., Dzwonkowski, B., Lowe, L.L., Coogan, J., 2022. Using dissolved oxygen variance to investigate the influence of nonextreme wind events on hypoxia in Mobile Bay, a shallow stratified estuary. Front. Mar. Sci. 9, 989017. https://doi.org/10.3389/fmars.2022.989017

  • Livingston, R.J., 2001. Eutrophication processes in coastal systems: origin and succession of plankton blooms and effects on secondary production in Gulf Coast estuaries, Boca Raton, Fla. ed. CRC Press.

  • Loesch, H.C., 1976. Shrimp Population Densities Within Mobile Bay. Gulf Res. Rep. 5. https://doi.org/10.18785/grr.0502.02

  • Lusseau, D., Williams, R., Wilson, B., Grellier, K., Barton, T.R., Hammond, P.S., Thompson, P.M., 2004. Parallel influence of climate on the behaviour of Pacific killer whales and Atlantic bottlenose dolphins. Ecol. Lett. 7, 1068–1076. https://doi.org/10.1111/j.1461-0248.2004.00669.x

  • Mann, J., Barnett, H., 1999. Lethal tiger shark (Galeocerdo cuvier) attack on

  • bottlenose dolphin (Tursiops sp.) calf: Defense and reactions by the mother. Mar.

  • Mamm. Sci. 15(2), 568–575.

  • Mann, J., Connor, R.C., Barre, L.M., Heithaus, M.R., 2000. Female reproductive success in bottlenose dolphins (Tursiops sp.): life history, habitat, provisioning, and group-size effects, Behav. Ecol., Vol. 11(2): 210–219. https://doi.org/10.1093/beheco/11.2.210

  • Marçalo, A., Samel, V., Carvalho, F., Frade, M., Erzini, K., Gonçalves, J.M., 2024. Evaluating dolphin interactions with bottom-set net fisheries off Southern Iberian Atlantic waters. Fish. Res. 278, 107100. https://doi.org/10.1016/j.fishres.2024.107100

  • Maze-Foley, K., Würsig, B., 2002. Patterns of social affiliation and group composition for bottlenose dolphins (Tursiops truncatus) in San Luis Pass, Texas. Gulf Mex. Sci. 20. https://doi.org/10.18785/goms.2002.05

  • Méthion, S., Paradell, O.G., Padín, X.A., Corrège, Th., Díaz López, B., 2023. Group size varies with climate and oceanographic conditions in bottlenose dolphins. Mar. Biol. 170. https://doi.org/10.1007/s00227-022-04154-4

  • Mills, E.M.M., Piwetz, S., Orbach, D.N., 2024. Behavioral hotspots of bottlenose dolphins in industrialized ship channels. Front. Mar. Sci. 11, 1334252. https://doi.org/10.3389/fmars.2024.1334252

  • Moreno, P., Mathews, M., 2018. Identifying foraging hotspots of bottlenose dolphins in a highly dynamic system: A method to enhance conservation in estuaries. Aquat. Mamm. 44, 694–710. https://doi.org/10.1578/AM.44.6.2018.694

  • Mullin, K.D., McDonald, T., Wells, R.S., Balmer, B.C., Speakman, T., Sinclair, C., Zolman, E.S., Hornsby, F., McBride, S.M., Wilkinson, K.A., Schwacke, L.H., 2017. Density, abundance, survival, and ranging patterns of common bottlenose dolphins (Tursiops truncatus) in Mississippi Sound following the Deepwater Horizon oil spill. PloS ONE 12, e0186265. https://doi.org/10.1371/journal.pone.0186265

  • Mullins, L., Cartwright, J., Dykstra, S.L., Evans, K., Mareska, J., Matich, P., Plumlee, J.D., Sparks, E., Drymon, J.M., 2024. Warming waters lead to increased habitat suitability for juvenile bull sharks (Carcharhinus leucas). Sci. Rep. 14, 4100. https://doi.org/10.1038/s41598-024-54573-0

  • Nicholls, C.R., Cantor, M., Möller, L., Parra, G.J., 2026. Sociality of marine mammals and their vulnerability to the spread of infectious diseases: A systematic review. Mammal Review, 56(1), e70020. https://doi.org/10.1111/mam.70020

  • Okubo, A., 1986. Dynamical aspects of animal grouping: Swarms, schools, flocks, and herds. Adv. Biophys. 22, 1–94. https://doi.org/10.1016/0065-227X(86)90003-1

  • O'Neil, P. E. and M. F. Mettee., 1982. Alabama coastal region ecological characterization. Volume 2. A synthesis of environmental data. A final report by the U.S. Fish and Wildlife Service for the U.S. Department of the Interior, Minerals Management Service Gulf of Mexico OCS Office, Metairie, LA. NTIS No. PB83-190009. FWS/OBS-82/42. Contract No. 14-12-0001-30037. 346 pp.

  • Orlando, S.P., Klein, C.J., 1989. Characterization of salinity and temperature for Mobile Bay. National Oceanic and Atmospheric Administration (NOAA)., Silver Spring, MD.

  • Parrish, J.K., Edelstein-Keshet, L., 1999. Complexity, pattern, and evolutionary trade-offs in animal aggregation. Science 284, 99–101. https://doi.org/10.1126/science.284.5411.99

  • Pebesma, E., 2018. Simple Features for R: Standardized support for spatial vector data. R J. 10, 439. https://doi.org/10.32614/RJ-2018-009

  • PPBEP., 2022. Comprehensive Conservation Management Plan: A prescription for healthy bays. 220. Pensacola, FL: Pensacola and Perdido Bays Estuary Program. https://www.ppbep.org/PDFs/CCMP_Draft.pdf

  • QGIS Development Team., 2024. QGIS Geographic Information System. Version 3.34. Quantum GIS Association, Berlin, Germany. 

  • Quintana-Rizzo, E., Wells, R.S., 2001. Resighting and association patterns of bottlenose dolphins (Tursiops truncatus) in the Cedar Keys, Florida: insights into social organization. Can. J. Zool. 79, 447–456. https://doi.org/10.1139/cjz-79-3-447

  • R Core Team, 2025. R: A Language and Environment for Statistical Computing.

  • Rashleigh, B., Cyterski, M., Smith, L.M., Nestlerode, J.A., 2009. Relation of fish and shellfish distributions to habitat and water quality in the Mobile Bay estuary, USA. Environ. Monit. Assess. 150, 181–192. https://doi.org/10.1007/s10661-008-0681-z

  • Rayment, W., Webster, T., 2009. Observations of Hector's dolphins (Cephalorhynchus hectori) associating with inshore fishing trawlers at Banks Peninsula, New Zealand. Z. J. Mar. Freshw. Res. 43:4, 911-916, https://doi.org/10.1080/00288330909510049

  • Ripley, B., Venables, B., 2009. MASS: Support Functions and Datasets for Venables and Ripley’s MASS. https://doi.org/10.32614/CRAN.package.MASS

  • Roberts, G., 1996. Why individual vigilance declines as group size increases. Anim. Behav. 51, 1077–1086. https://doi.org/10.1006/anbe.1996.0109

  • Ronje, E., Piwetz, S., Whitehead, H., Mullin, K.D., 2020a. Intraspecific Aggression Towards Common Bottlenose Dolphin Calves, Northern Gulf of Mexico. Gulf Caribb. Res. 31, SC6–SC12. https://doi.org/10.18785/gcr.3101.07

  • Ronje, E., Whitehead, H., Barry, K., Piwetz, S., Struve, J., Lecours, V., Garrison, L., Wells, R.S., Mullin, K.D., 2020b. Abundance and occurrence of common bottlenose dolphins (Tursiops truncatus) in three estuaries of the northwestern Gulf of Mexico. Gulf Caribb. Res. 31, 18–34. https://doi.org/10.18785/gcr.3101.09

  • Sarabia, R.E., Heithaus, M.R., Kiszka, J.J., 2017. Spatial and temporal variation in abundance, group size and behaviour of bottlenose dolphins in the Florida coastal Everglades. J. Mar. Biol. Assoc. U. K. 98, 1097–1107. https://doi.org/10.1017/S002531541700090X

  • Schroeder, W.W., Dinnel, S., Wiseman, W., 1990. Salinity stratification in a river dominated estuary. Estuaries 13, 145–154.

  • Schülke, O., Bhagavatula, J., Vigilant, L., and Ostner, J., 2010. Social bonds enhance reproductive success in male macaques. Curr, Biol., 20: 2207-2210. https://doi.org/10.1016/j.cub.2010.10.05

  • Shane, S.H., 2004. Residence patterns, group characteristics, and association patterns of bottlenose dolphins near Sanibel Island, Florida. Gulf Mex. Sci. 22. https://doi.org/10.18785/goms.2201.01

  • Shane, S.H., Wells, R.S., Würsig, B., 1986. Ecology, behavior and social organization of the bottlenose dolphin: a review. Mar. Mamm. Sci. 2, 34–63. https://doi.org/10.1111/j.1748-7692.1986.tb00026.x

  • Shirakihara, M., Shirakihara, K., Tomonaga, J., Takatsuki, M., 2002. A resident population of indo‐pacific bottlenose dolphins (Tursiops aduncus) in Amakusa, Western Kyushu, Japan. Mar. Mamm. Sci. 18, 30–41. https://doi.org/10.1111/j.1748-7692.2002.tb01016.x

  • Silk, J.B., 2007. The adaptive value of sociality in mammalian groups. Philos. Trans. R. Soc. B Biol. Sci. 362, 539–559. https://doi.org/10.1098/rstb.2006.1994

  • Simpfendorfer, C.A., Freitas, G.G., Wiley, T.R., Heupel, M.R., 2005. Distribution and habitat partitioning of immature bull sharks (Carcharhinus leucas) in a Southwest Florida estuary. Estuaries 28, 78–85. https://doi.org/10.1007/BF02732755

  • Sinclair, C., 2016. Comparison of group size, abundance estimates and movement patterns of common bottlenose dolphins (Tursiops truncatus) in Mississippi Sound, Mississippi (Master of Science). Louisiana State University and Agricultural and Mechanical College. https://doi.org/10.31390/gradschool_theses.1866

  • Sprogis, K.R., Parra, G.J., 2022. Coastal dolphins and marine megafauna in Exmouth Gulf, Western Australia: informing conservation management actions in an area under increasing human pressure. Wildl. Res. 50, 435–450. https://doi.org/10.1071/WR22023

  • Stander, P. E., 1992. Cooperative hunting in lions—the role of the individual. Behav. Ecol. Sociobiol. 29: 445–454.

  • Steenbeek, R., van Schaik, C.P., 2000. Competition and group size in Thomas’s langurs (Presbytis thomasi): The folivore paradox revisited. Behav. Ecol. Sociobiol. 49:100–110.

  • Syme, J., Kiszka, J.J., Parra, G.J., 2022. How to define a dolphin “group”? Need for consistency and justification based on objective criteria. Ecol. Evol. 12, e9513. https://doi.org/10.1002/ece3.9513

  • Titcomb, E.M., O’Corry‐Crowe, G., Hartel, E.F., Mazzoil, M.S., 2015. Social communities and spatiotemporal dynamics of association patterns in estuarine bottlenose dolphins. Mar. Mamm. Sci. 31, 1314–1337. https://doi.org/10.1111/mms.12222

  • Torres, L.G., Read, A.J. Halpin, P., 2008. Fine‐scale habitat modeling of a top marine predator: do prey data improve predictive capacity. Ecol. Appl. 18, 1702–1717.

  • van Etten, J., 2017. gdistance: Distances and routes on geographical grids. R J. 440–460.

  • Vaughn, R., Würsig, B., Packard, J., 2010. Dolphin prey herding: Prey ball mobility relative to dolphin group and prey ball sizes, multispecies associates, and feeding duration. Mar. Mamm. Sci. 26, 213–225. https://doi.org/10.1111/j.1748-7692.2009.00317.x

  • Ward, A., Webster, M., 2016. Sociality: The behaviour of group-living animals. Springer International Publishing.

  • Wells, R.S., Scott, M.D., Irvine, A.B., 1987. The social structure of free-ranging bottlenose dolphins, in: Genoways, H.H. (Ed.), Current Mammalogy. Plenum Press, New York, New York and London, pp. 247–305. https://doi.org/10.1007/978-1-4757-9909-5_7

  • Wilcox Talbot, L. A., Paterson, C. N., Vollmer, N. L., Sinclair, C., Barry, K. P., Bouveroux, T., Mullin, K. D., Carmichael, R. H., & Rosel, P. E., 2025. Genetic stock structure of common bottlenose dolphins in Mobile Bay, Perdido Bay, and the adjacent coastal waters of Alabama (Technical Report No. MMTD-2025-05; p. 29). https://doi.org/10.25923/haxg-jd40

  • Wilkinson, K.A., Wells, R.S., Pine, W.E., Borkhataria, R.R., 2017. Shark bite scar frequency in resident common bottlenose dolphins (Tursiops truncatus) in Sarasota Bay, Florida. Mar. Mamm. Sci. 33, 678–686. https://doi.org/10.1111/mms.12385

  • Würsig, B., Jefferson, T., 1990. Methods of photo-identification for small cetaceans. Rep. Int. Whal. Comm. Special Issue, 43–52.

  • Xia, M., Craig, P.M., Wallen, C.M., Stoddard, A., Mandrup-Poulsen, J., Peng, M., Schaeffer, B., Liu, Z., 2011. Numerical simulation of salinity and dissolved oxygen at Perdido Bay and adjacent coastal ocean. J. Coast. Res. 27, 73. https://doi.org/10.2112/JCOASTRES-D-09-00044.1

Data and Resources

Additional Info

Field Value
Author Thibaut Bouveroux
Maintainer data@disl.edu
Version 0.1
Last Updated April 27, 2026, 14:42 (UTC)
Created April 27, 2026, 14:09 (UTC)
ISO.author.2 Carl Cloyed <ccloyed@disl.org>
ISO.author.3 Ruth Carmichael <rcarmichael@disl.org>
ISO.author.4 Keith Mullin <keithmullin439@gmail.com>
ISO.author.5 Kevin Barry <kevin.barry@noaa.gov>
ISO.author.6 Carrie Sinclair <carrie.sinclair@noaa.gov>
Temporal Begin 2020-01
Temporal End 2022-06
spatial { "type": "Polygon", "coordinates": [ [ [ -88.15, 30.67 ], [ -88.15, 30.21 ], [ -87.30, 30.21 ], [ -87.30, 30.67 ], [ -88.15, 30.67 ] ] ] }