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Do harlequin Mediterranean environments function as source sink for Blue Tits (Parus caeruleus L.)?

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Abstract

We investigate whether a mosaic of habitats of different quality functions as a source-sink system for the Blue Tit Parus caeruleus L. Breeding parameters, especially laying date, clutch size and breeding success have been studied in relation to the food supply in three habitats: two habitats, one rich and one poor, next to each other on the mainland (southern France) and one poor habitat on the island of Corsica. Food resources are more abundant and are available earlier in the season in the rich habitat than in both the mainland and the island poor habitats. The timing of breeding is nicely timed on the food peak of abundance in the rich mainland habitat and in the poor insular one but tits are mistimed in the poor mainland habitat because they start to breed too early in relation to food availability. Such patterns strongly suggest that the rich mainland habitat where birds produce many fledglings functions as a source from which birds emigrate in the poor habitat which functions as a sink. These birds which are genetically programmed to breed in the source habitat become mistimed in the sink. Tits on Corsica which are isolated from any mainland population have adjusted their breeding traits on the local patterns of food availability and abundance. This hypothesis is supported by the existence of a strong genetic component of laying date which has been experimentally proved.

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References

  • Blondel, J. 1985. Breeding strategies of the Blue Tit and the Coal Tit (Parus) in mainland and island Mediterranean habitats: a comparison. J. Anim. Ecol. 54: 531–556.

    Google Scholar 

  • Blondel, J. 1986. Biogéographie Evolutive. Masson, Paris.

    Google Scholar 

  • Blondel, J. 1987. From biogeography to life history theory: a multithematic approach. J. Biogeogr. 14: 405–422.

    Google Scholar 

  • Blondel, J. 1990. Birds in biological isolates. In Bird Population Studies, their relevance to Conservation and Management. pp. 45–72. Edited by C.M. Perrins, J.D. Lebreton and G. Hirons. Oxford Univ. Press.

  • Blondel, J., Clamens, A., Cramm, P., Gaubert, H. and Isenmann, P. 1987. Population studies of tits in the Mediterranean region. Ardea 75: 21–34.

    Google Scholar 

  • Blondel, J., Perret, Ph. and Maistre, M. 1990. On the genetical basis of the laying date in an island population of Blue Tit. J. Evol. Biol. 3: 469–475.

    Google Scholar 

  • Cohen, J. 1969. Natural primate troops and a stochastic population model. Am. Nat. 103: 455–477.

    Google Scholar 

  • Cohen, J. 1971. Casual groups of monkeys and men: stochastic models of elemental social systems. Oxford University Press, London.

    Google Scholar 

  • Den Boer, P.J. 1968. Spreading of the risk and stabilization of animal numbers. Acta Biotheor. 18: 165–194.

    CAS  PubMed  Google Scholar 

  • Drent, R.H. and Daan, S. 1980. The prudent parent: energetic adjustments in avian breeding. Ardea 68: 225–252.

    Google Scholar 

  • Isenmann, P., Cramm, P. et Clamens, A., 1987. Etude comparée de l'adaptation des mésanges du genre Parus aux différentes essences forestières du bassin méditerranéen occidental. Rev. Ecol. (Terre et Vie) Suppl. 4: 17–25.

    Google Scholar 

  • Lack, D. 1966. Population Studies of Birds. Clarendon Press, Oxford.

    Google Scholar 

  • Lidicker, W.Z. Jr. 1975. The role of dispersal in the demography of small mammals. In Small mammals: their productivity and population dynamics. pp. 103–128. Edited by F.B. Golley, K. Petrusewicz, and L. Ryszkowski. Cambridge University Press, Cambridge.

    Google Scholar 

  • Martin, T.E. 1987. Food as a limit on breeding birds: a lifehistory perspective. Ann. Rev. Ecol. Syst. 18: 453–487.

    Google Scholar 

  • Morris, D.W. 1988. Habitat population regulation and community structure. Evol. Ecol. 2: 253–269.

    Google Scholar 

  • Newton, I. 1980. The role of food in limiting bird numbers. Ardea 68: 11–30.

    Google Scholar 

  • Perrins, C.M. 1979. British Tits. Collins, London.

    Google Scholar 

  • Perrins, C. 1965. Population fluctuations and clutch-size in the Great tit (Parus major). J. Anim. Ecol. 34: 601–647.

    Google Scholar 

  • Perrins, C.M. and McCleery, R.H. 1989. Laying dates and clutch size in the Great Tit. Wilson Bulletin 1091: 236–253.

    Google Scholar 

  • Pulliam, H.R. 1988. Sources, sinks, and population regulation. Am. Nat. 132: 652–661.

    Google Scholar 

  • Ricklefs, R.E. 1983. Avian demography. Current Ornithology 1: 1–32.

    Google Scholar 

  • Ricklefs, R.E. 1987. Community diversity: relative roles of local and regional processes. Science 235: 167–171.

    Google Scholar 

  • Ricklefs, R.E., Naveh, Z. and Turner, R.E. 1984. Conservation of ecological processes. Environmentalist 4 (supplement): 5–16.

    Google Scholar 

  • Rosenzweig, M.L. 1985. Some Theoretical Aspects of Habitat Selection. In Habitat Selection in Birds. pp. 527–540. Edited by M.L. Cody. Academic Press, New York.

    Google Scholar 

  • Snow, D.W. 1954. The habitats of Eurasian tits, Parus spp.Habitat Selection in Birds. Edited by M.L. Cody. Academic Press, New York 96: 565–585.

  • Soulé, M.E. (Ed.). 1987. Conservation Biology. The Sciences of Scarcity and Diversity. Sinauer Assoc., Sunderland, Massachusetts.

    Google Scholar 

  • Tinbergen, L. 1960. The natural control of insects in pinewoods. I. Factors influencing the intensity of predation by songbirds. Archives Néerlandaises de Zoologie 13: 265–336.

    Google Scholar 

  • Van Balen, J.H. 1973. A comparative study of the Great Tit Parus major in different habitats. Ardea 61: 1–93.

    Google Scholar 

  • Van Horne, B. 1983. Density as a misleading indicator of habitat quality. J. Wildl. Manage. 47: 893–901.

    Google Scholar 

  • Van Noordwijk, A.J., van Balen, J.H. and Scharloo, W. 1980. Heritability of ecologically important traits in the Great Tit. Ardea 68: 193–203.

    Google Scholar 

  • Van Noordwijk, A.J. 1987. Quantitative Ecological Genetics of Great Tits. In Avian Genetics. pp. 363–380. Edited by F. Cooke and P.A. Buckley. Academic Press, London.

    Google Scholar 

  • Wiens, J.A. 1986. Spatial scale and temporal variation in studies of shrubsteppe birds. In Community Ecology. pp. 154–172. Edited by J.M. Diamond and T.J. Case. Harper and Row, New York.

    Google Scholar 

  • Wiens, J.A. 1989. The Ecology of Bird Communities. 2 vol. Cambridge Studies in Ecology. Cambridge Univ. Press, Cambridge.

    Google Scholar 

  • Wiens, J.A. and Rotenberry, J.T. 1981. Censusing and the evaluation of avian habitat occupancy. Stud. Avian Biol. 6: 522–532.

    Google Scholar 

  • Zandt, H., Strijkstra, A., Blondel, J. and Van Balen, H. 1990. Food in two Mediterranean Blue Tit populations: Do differences in caterpillar availability explain differences in timing of the breeding season? In Population Biology of Passerine Birds. pp. 145–155. Edited by J. Blondel, A. Gosler, J.D. Lebreton and R. McCleery. NATO ASI Series G, vol. 24. Springer-Verlag, Berlin, Heidelberg.

    Google Scholar 

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Blondel, J., Perret, P., Maistre, M. et al. Do harlequin Mediterranean environments function as source sink for Blue Tits (Parus caeruleus L.)?. Landscape Ecol 6, 213–219 (1992). https://doi.org/10.1007/BF00130032

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