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5 - Florida scrub-jays: Oversized territories and group defense in a fire-maintained habitat

Published online by Cambridge University Press:  18 December 2015

Walter D. Koenig
Affiliation:
Cornell University, New York
Janis L. Dickinson
Affiliation:
Cornell University, New York
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Cooperative Breeding in Vertebrates
Studies of Ecology, Evolution, and Behavior
, pp. 77 - 96
Publisher: Cambridge University Press
Print publication year: 2016

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References

Abrahamson, W. G. (1984). Post-fire recovery of Florida Lake Wales ridge vegetation. Am. J. Bot., 7, 921.Google Scholar
Abrahamson, W. G. and Layne, J. N. (2002). Post-fire recovery of acorn production by four oak species in southern ridge sandhill association in south-central Florida. Amer. J. Bot., 89, 119123.CrossRefGoogle ScholarPubMed
Abrahamson, W. G. and Layne, J. N. (2003). Long-term patterns of acorn production for five oak species in xeric Florida uplands. Ecology, 84, 24762492.CrossRefGoogle Scholar
Aldredge, R. A., LeClair, S. C., and Bowman, R. (2012). Declining egg viability explains higher hatching failure in a suburban population of the threatened Florida scrub-jay Aphelocoma coerulescens. J. Avian. Biol., 43, 369375.CrossRefGoogle Scholar
Bebus, S. E., Jones, B. C., and Schoech, S. J. (2014). Stress-response, experience, and neophobia in free-living Florida scrub-jays (Aphelocoma coerulescens). Integr. Comp. Biol., 54 (Suppl. 1), E14.Google Scholar
Boughton, R. and Bowman, R. (2011). State wide assessment of Florida Scrub-Jay on managed areas: A comparison of current populations to the results of the 1992–93 survey. Report to USFWS, 37 pp.Google Scholar
Bowman, R. (1998). Population dynamics, demography, and contributions to metapopulation dynamics by suburban populations of the Florida scrub-jay, Aphelocoma coerulescens. Nongame Wildlife Program Final Report. Tallahassee, Florida, Florida Game and Freshwater Fish Commission, pp. iii-137.Google Scholar
Breininger, D. R. and Oddy, D. M. (2004). Do habitat potential, population density, and fires influence scrub-jay source-sink dynamics? Ecol. Appl., 14, 10791089.CrossRefGoogle Scholar
Breininger, D. R., Toland, B., Oddy, D. M., and Legare, M. L. (2006). Landcover characterizations and Florida scrub-jay (Aphelocoma coerulescens) population dynamics. Biol. Conserv., 128, 169181.CrossRefGoogle Scholar
Brown, J. L. 1987. Helping and Communal Breeding in Birds: Ecology and Evolution. Princeton, NJ: Princeton University Press.CrossRefGoogle Scholar
Burt, D. B. and Peterson, A. T. (1993). Biology of cooperative breeding scrub-jays (Aphelocoma coerulescens) of Oaxaca, Mexico. Auk, 110, 207214.Google Scholar
Caldwell, L., Bakker, V. J., Sillett, T. S., Desrosiers, M. A., Morrison, S. A., and Ingeloni, L. M. (2013). Reproductive ecology of the Island Scrub-Jay. Condor, 115, 603613.CrossRefGoogle Scholar
Carmen, W. J. (2004). Noncooperative breeding in the California scrub-jay. Stud. Avian Biol., 28, 1100.Google Scholar
Coulon, A., Fitzpatrick, J. W., Bowman, R., Stith, B. M., Makarewich, C. A., et al. (2008). Congruent population structure inferred from dispersal behaviour and intensive genetic surveys of the threatened Florida scrub-jay (Aphelocoma coerulescens). Mol. Ecol., 17, 16851701.CrossRefGoogle ScholarPubMed
Coulon, A., Fitzpatrick, J. W., Bowman, R., and Lovette, I. J. (2010). Effects of habitat fragmentation on effective dispersal of Florida scrub-jays. Conserv. Biol., 24, 10801088.CrossRefGoogle ScholarPubMed
Coulon, A., Fitzpatrick, J. W., Bowman, R., and Lovette, I. J. (2012). Mind the gap: genetic distance increases with habitat gap size in Florida scrub jays. Biol. Lett., 8, 582585.CrossRefGoogle Scholar
Covas, R., Doutrelant, C., and Du Plessis, M. A. (2004). Experimental evidence of a link between breeding conditions and the decision to breed or to help in a colonial cooperative bird. Proc. R. Soc. London B, 271, 827832.CrossRefGoogle ScholarPubMed
Curry, R. L., Peterson, A. T., and Langen, T. A. (2002). Western scrub-jay (Aphelocoma californica). In: The Birds of North America Online, ed. Poole, A.. Ithaca, NY: Cornell Lab of Ornithology. Retrieved from The Birds of North America Online: http://bna.birds.cornell.edu/bna/species/712Google Scholar
DeGange, A. R. (1976). The daily and annual time budget of the Florida scrub-jay. M.S. thesis, University of South Florida, Tampa, FL.Google Scholar
DeGange, A. R., Fitzpatrick, J. W., Layne, J. N., and Woolfenden, G. E. (1989). Acorn harvesting by Florida scrub-jays. Ecology, 70, 348356.CrossRefGoogle Scholar
Edwards, S. V. and Naeem, S. (1993). The phylogenetic component of cooperative breeding in perching birds. Am. Nat., 141, 754789.CrossRefGoogle ScholarPubMed
Emslie, S. D. (1996). A fossil scrub-jay supports a recent systematic decision. Condor, 98, 675680.CrossRefGoogle Scholar
Ferguson, S. M., Small, T. W., and Schoech, S. J. (2014). We gotta get out of this place: relationships between corticosterone and dispersal distance in the Florida scrub-jay (Aphelocoma coerulescens). Integr. Comp. Biol., 54 (Suppl. 1), E63.Google Scholar
Fitzpatrick, J. W. and Woolfenden, G. E. (1986). Demographic routes to cooperative breeding in some New World jays. In: Evolution of Animal Behavior: Paleontological and Field Approaches, ed. Nitecki, M. N. and Kitchell, J. A.. Chicago, IL: University of Chicago Press, pp. 137160.Google Scholar
Fitzpatrick, J. W. and Woolfenden, G. E. (1989). Florida scrub-jay. In: Lifetime Reproduction in Birds, ed. Newton, I.. London: Academic Press, pp. 201218.Google Scholar
Fitzpatrick, J. W., Pranty, W., and Stith, B. (1994). Florida Scrub-Jay Statewide Map, 1992–1993. Report to U. S. Fish and Wildlife. Archbold Biological Station, Lake Placid, FL.Google Scholar
Fitzpatrick, J. W., Woolfenden, G. E., and Bowman, R. (1999). Dispersal distance and its demographic consequences in the Florida scrub-jay. Proc. Int. Ornithol. Congr., 22, 24652479.Google Scholar
Fleischer, A. L. Jr., Bowman, R., and Woolfenden, G. E. (2003). Variation in foraging behavior, diet, and time of breeding of Florida scrub-jays in suburban and wildland habitats. Condor, 105, 515527.CrossRefGoogle Scholar
Franzreb, K. E. and Zarnoch, S. J. (2011). Factors affecting Florida scrub-jay nest survival on Ocala National Forest, Florida. J. Wildl. Manage., 75, 10401050.CrossRefGoogle Scholar
Fretwell, S. D. and Calver, J. S. (1969). On territorial behavior and other factors influencing habitat distribution in birds. Acta Biotheor., 19, 3744.CrossRefGoogle Scholar
Goldstein, J. M., Woolfenden, G. E., and Hailman, J. P. (1998). A same-sex stepparent shortens a prebreeder’s duration on the natal territory: tests of two hypotheses in Florida scrub-jays. Behav. Ecol. Sociobiol., 44, 1522.CrossRefGoogle Scholar
Jones, B. C., Bebus, S., and Schoech, S. J. (2014). Learned anti-predator behavior is impaired by exogenous corticosterone in free-living Florida scrub-jays (Aphelocoma coerulescens). Integr. Comp. Biol., 54 (Suppl. 1), E103.Google Scholar
Koenig, W. D. and Knops, J. M. H. (2000). Patterns of annual seed production by northern hemisphere trees: a global perspective. Am. Nat. 155, 5969.CrossRefGoogle Scholar
Koenig, W. D. and Knops, J. M. H. (2002). The behavioral ecology of masting in oaks. In: Oak Forest Ecosystems, ed. McShea, W. J. and Healy, W. M.. Baltimore, MD: Johns Hopkins University Press, pp. 129148.Google Scholar
Koenig, W. D., Krakauer, A. H., Monahan, W. B., Haydock, J. Knops, J. M. H., et al. (2009). Mast-producing trees and the geographical ecology of western scrub-jays. Ecography 32: 561570.CrossRefGoogle Scholar
Koenig, W. D., Pitelka, F., Carmen, W. J., Mumme, R. L., and Stanback, M. T. (1992). The evolution of delayed dispersal in cooperative breeders. Q. Rev. Biol., 67, 111150.CrossRefGoogle ScholarPubMed
Langin, K. M., Sillett, T. S., Funk, W. C., Morrison, S. A., Desrosiers, M. A., et al. (2015). Islands within an island:repeated adaptive divergence in a single population. Evolution, 69, 653–665.CrossRefGoogle Scholar
Marzluff, J. M., Woolfenden, G. E., Fitzpatrick, J. W., and Balda, R. P. (1996). Breeding partnerships of two New World jays. In: Partnerships in Birds: The Study of Monogamy, ed. Black, J. M.. Oxford: Oxford University Press, pp. 138161.CrossRefGoogle Scholar
McCormack, J. E., Heled, J., Delaney, K. S., Peterson, A. T., and Knowles, L. L. (2010). Calibrating divergence times on species trees versus gene trees: implications for speciation history of Aphelocoma jays. Evolution, 65, 184202.CrossRefGoogle Scholar
McDonald, D., Woolfenden, G. E., and Fitzpatrick, J. W. (1996). Actuarial senescence and demographic heterogeneity in the Florida Scrub Jay. Ecology, 77, 23732381.CrossRefGoogle Scholar
McGowan, K. J. and Woolfenden, G. E. (1989). A sentinel system in the Florida scrub jay. Anim. Behav., 37, 10001006.CrossRefGoogle Scholar
McGowan, K. J. and Woolfenden, G. E. (1990). Contributions to fledgling feeding in the Florida scrub jay. J. Anim. Ecol., 59, 691707.CrossRefGoogle Scholar
Menges, E. (2007) Integrating demography and fire management: an example from Florida scrub. Aust. J. Biol., 55, 261272.Google Scholar
Mumme, R. L. (1992). Do helpers increase reproductive success? An experimental analysis in the Florida scrub jay. Behav. Ecol. Sociobiol., 31, 319328.CrossRefGoogle Scholar
Mumme, R., Bowman, R, Pruett, M. S., and Fitzpatrick, J. W. (2015). Natal territory size, group size, and body mass affect lifetime fitness in the cooperatively breeding Florida scrub-jay. Auk: Ornithol. Advances, 132, 634646.CrossRefGoogle Scholar
Niederhauser, J. M. and Bowman, R. (2014). Testing sources of variation in nestling-stage nest success of Florida scrub-jays in suburban and wildland habitats. J. Field Ornithol., 85, 180195.CrossRefGoogle Scholar
Ostertag, R. and Menges, E. S. (1994). Patterns of reproductive effort with time since last fire in Florida scrub plants. J. Veg. Sci., 5, 303310.CrossRefGoogle Scholar
Peterson, A. T. and Burt, D. B. (1992). Phylogenetic history of social evolution and habitat use in the Aphelocoma jays. Anim. Behav., 44, 859856.CrossRefGoogle Scholar
Peterson, A. T. and Vargas, N. , B. (1993). Ecological diversity in scrub jays (Aphelocoma coerulescens). In: The Biological Diversity of Mexico, eds. Ramamoorthy, T. P., Bye, R., Lot, A. and Fa, J.. Oxford, U.K.: Oxford University Press, pp. 309317.Google Scholar
Rensel, M. A. and Schoech, S. J. (2011). Repeatability of baseline and stress-induced corticosterone levels across early life stages in the Florida scrub-jay (Aphelocoma coerulescens). Horm. Behav., 59, 497502.CrossRefGoogle ScholarPubMed
Rensel, M. A., Wilcoxen, T. E., and Schoech, S. J. (2010). The influence of nest attendance and provisioning on nestling stress physiology in the Florida scrub-jay. Horm. Behav., 57, 162168.CrossRefGoogle ScholarPubMed
Reynolds, S. J., Schoech, S. J., and Bowman, R. (2003). Nutritional quality of prebreeding diet influences breeding performance of the Florida scrub-jay. Oecologia, 134, 308316.CrossRefGoogle ScholarPubMed
Sauter, A. (2005). Shall we feed suburban Florida scrub-jays Aphelocoma coerulescens? The importance of human-provided foods on parental food choice, nestling growth and survival. Ph.D. thesis, University of Zurich, Zurich, Switzerland.Google Scholar
Sauter, A., Bowman, R., Schoech, S. J., and Pasinelli, G. (2006). Does optimal foraging theory explain why suburban Florida scrub-jays (Aphelocoma coerulescens) feed their young human-provided food? Behav. Ecol. Sociobiol., 60, 465474.CrossRefGoogle Scholar
Schoech, S. J., Mumme, R. L., and Wingfield, J. C. (1996a). Delayed breeding in the cooperatively breeding Florida scrub-jay (Aphelocoma coerulescens): inhibition or the absence of stimulation? Behav. Ecol. Sociobiol., 39, 7790.CrossRefGoogle Scholar
Schoech, S. J., Mumme, R. L., and Wingfield, J. C. (1996b). Prolactin and helping behaviour in the cooperatively breeding Florida scrub-jay, Aphelocoma coerulescens. Anim. Behav., 52, 445456.CrossRefGoogle Scholar
Schoech, S. J., Mumme, R. L., and Wingfield, J. C. (1997). Corticosterone, reproductive status, and body mass in a cooperative breeder, the Florida scrub-jay (Aphelocoma coerulescens). Physiol. Zool., 70, 6873.CrossRefGoogle Scholar
Schoech, S. J., Bowman, R., and Reynolds, S. J. (2004). Food supplementation and possible mechanisms underlying early breeding in the Florida scrub-jay (Aphelocoma coerulescens). Horm. Behav., 46, 565573.CrossRefGoogle ScholarPubMed
Schoech, S. J., Bowman, R., Bridge, E. S., and Boughton, R. K. (2007). Baseline and acute levels of corticosterone in Florida scrub-jays (Aphelocoma coerulescens): effects of food supplementation, suburban habitat, and year. Gen. Comp. Endocrin., 154, 150160.CrossRefGoogle ScholarPubMed
Schoech, S. J., Rensel, M. A., and Wilcoxen, T. E. (2012). Here today, not gone tomorrow: long-term effects of corticosterone. J. Ornithol., 153, 217226.CrossRefGoogle Scholar
Shank, C. C. (1986). Territory size, energetics, and breeding strategy in the Corvidae. Am. Nat., 128, 642652.CrossRefGoogle Scholar
Shawkey, M. D., Bowman, R., and Woolfenden, G. E. (2004). Why is brood reduction in Florida scrub-jays higher in suburban than in wildland habitats? Can. J. Zool., 82, 14271435.CrossRefGoogle Scholar
Sillett, T. S., Chandler, R. B., Royle, J. A., Kéry, M., and Morrison, S. A. (2012). Hierarchical distance-sampling models to estimate population size and habitat-specific abundance of an island endemic. Ecol. Appl., 22, 19972006.CrossRefGoogle ScholarPubMed
Stallcup, J. A. and Woolfenden, G. E. (1978). Family status and contributions to breeding by Florida scrub-jays. Anim. Behav., 26, 11441156.CrossRefGoogle Scholar
Stith, B. M., Fitzpatrick, J. W., Woolfenden, G. E., and Pranty, B. (1996). Classification and conservation of metapopulations: a case study of the Florida scrub-jay. In: Metapopulations and Wildlife Conservation, ed. McCullough, D. R.. Washington D.C.: Island Press, pp. 187215.Google Scholar
Townsend, A. K., Bowman, R., Fitzpatrick, J. W., Dent, M., and Lovette, I. J. (2011). Genetic monogamy across variable demographic landscapes in cooperatively breeding Florida scrub-jays. Behav. Ecol., 22, 464470.CrossRefGoogle Scholar
Tringali, A. and Bowman, R. (2015). Suburban immigrants to wildlands disrupt honest signaling in ultra-violet plumage. Avian Cons. Ecol., 10(1), 9.Google Scholar
Turner, W. R., Wilcove, D. S., and Swain, H. M. (2006). Assessing the effectiveness of reserve acquisition programs in protecting rare and threatened species. Cons. Biol., 20, 16571669.CrossRefGoogle ScholarPubMed
Woolfenden, G. E. and Fitzpatrick, J. W. (1977). Dominance in the Florida scrub jay. Condor, 79, 112.CrossRefGoogle Scholar
Woolfenden, G. E. and Fitzpatrick, J. W. (1978). Inheritance of territory in group-breeding birds. BioScience, 28, 104108.CrossRefGoogle Scholar
Woolfenden, G. E. and Fitzpatrick, J. W. (1984). The Florida Scrub Jay: Demography of a Cooperative-breeding Bird. Princeton, NJ: Princeton University Press.Google Scholar
Woolfenden, G. E. and Fitzpatrick, J. W. (1996). Florida scrub-jay (Aphelocoma coerulescens). In: Birds of North America, no. 228, ed. Polle, A. and Gill, F.. Philadelphia, PA and Washington, D.C.: The Academy of Natural Sciences and The American Ornithologists’ Union, pp. 128.Google Scholar

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