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Factors affecting seed rain beneath fleshy-fruited plants

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Abstract

We investigated factors affecting seed rain beneath nine fleshy-fruited fruiting plant species growing in a 1-ha plot of planted Pinus thunbergii in central Japan. We tested whether the numbers of seeds and seed species dropped by birds beneath fruiting plants were correlated with the number of fruits removed by birds from the plants. Most of fruiting plant species with high fruit removal had significantly high seed rain. Both the numbers of seeds and seed species dropped were significantly, positively correlated with the number of fruits removed across for all fruiting plant species. Therefore, fruit removal predicted the difference among heterospecific fruiting plants in seed rain. We also tested whether the number of fruits removed from fruiting plants by birds was related with fruit crop size, fruit size, and height of the plants, and the numbers of fruits and fruit species of neighboring plants near the plants. Most of fruiting plant species with high fruit crop size had significantly high fruit removal. The number of fruits removed was significantly, positively correlated with both the fruit crop size and the number of neighboring fruits across the nine fruiting plant species. However, the effect of the neighboring fruit density on fruit removal was lower remarkably than that of fruit crop size. Therefore, fruit crop size best predicted the differences among heterospecific fruiting plants in fruit removal. We suggest that fruiting plant species with high fruit crop size and high fruit removal contribute to intensive seed rain beneath them.

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References

  • Alcántara J.M., Rey P.J., Valera F. and Sánchez-Lafuente A.M. 2000. Factors shaping the seedfall pattern of a bird-dispersed plant. Ecology 81: 1937–1950.

    Google Scholar 

  • Alvarez-Buylla E.R. and Martínez-Ramos M. 1990. Seed bank versus seed rain in the regeneration of a tropical pioneer tree. Oecologia 84: 314–325.

    PubMed  Google Scholar 

  • Davidar P. and Morton E.S. 1986. The relationship between fruit crop sizes and fruit removal rates by birds. Ecology 68: 262–265.

    Google Scholar 

  • Debussche M., Escarré J. and Lepart J. 1982. Ornithochory and plant succession in Mediterranean abandoned orchards. Vegetatio 48: 255–266.

    Google Scholar 

  • Debussche M. and Isenmann P. 1994. Bird-dispersed seed rain and seedling establishment in patchy Mediterranean vegetation. Oikos 69: 414–426.

    Google Scholar 

  • Denslow J.S. 1987. Fruit removal rates from aggregated and isolated bushes of the red elderberry, Sambucus pubens. Canadian Journal of Botany 65: 1229–1235.

    Google Scholar 

  • Facelli J.M. 1993. Experimental evaluation of the foliar flag hypothesis using fruits of Rhus glabra (L.). Oecologia 93: 70–72.

    PubMed  Google Scholar 

  • Fleming T.H.1981Fecundity, fruiting pattern, and seed dispersal in Piper amalago (Piperaceae), a bat-dispersed tropical shrub.Oecologia 51: 42–46.

    PubMed  Google Scholar 

  • Fleming T.H. and Heithaus E. R. 1981 Frugivurous bats, seed, shadows and the structure of tropical forests. Reproductive Botany 13: 45–53.

    Google Scholar 

  • Fleming T.H. 1991. Fruiting plant-frugivore mutualiasm: the evolutionary theater and the ecological play, pp. 119–144. In: Price P.W., Lewinsohn T.M., Fernandes G.W. and Benson W.W. (eds), Plant-animal interactions: evolutionary ecology in tropical and temperate regions. Wiley, New York, USA.

    Google Scholar 

  • Fukui A. 1996. Retention time of seeds in bird guts: costs and benefits for fruiting plants and frugivorous birds. Plant Species Biology 11: 141–147.

    Google Scholar 

  • Glyphis J.P., Milton S.J. and Siegfried W.R. 1981. Dispersal of Acacia cyclops by birds. Oecologia 48: 138–141.

    CAS  PubMed  Google Scholar 

  • Guevara S. and Laborde J. 1993. Monitoring seed dispersal at iso-lated standing trees in tropical pastures: consequences for local species availability. Vegetatio 107/108: 319–338.

    Google Scholar 

  • Guevara S., Purata S.E. and van der Maarel E. 1986. The role of remnant forest trees in tropical secondary succession. Vegetatio 66: 77–84.

    Google Scholar 

  • Guevara S., Meave J., Moreno-Casasola P. and Laborde J. 1992. Floristic composition and structure of vegetation under isolated trees in neotropical pastures. Journal of Vegetation Science 9: 655–664.

    Google Scholar 

  • Harper J.P. 1977.Population Biology of Plants. Academic Press, London, UK.

    Google Scholar 

  • Hegde S.G., Ganeshaiah K.N. and Uma Shaanker R. 1991. Fruit preference criteria by avian frugivories: their implications for the evolution of clutch size in Solanum pubescens. Oikos60: 20–26.

    Google Scholar 

  • Herrera C.M. 1984.A study of avian frugivores, bird-dispersed plants, and their interaction in Mediterranean scrublands.Ecological Monographs 54: 1–23.

    Google Scholar 

  • Herrera C.M. 1986. Vertebrate-dispersed plants: why they don't behave the way they should, pp. 5–18. In: Estrada A. and Fleming T.H. (eds), Frugivores and Seed Dispersal. Junk, Boston, USA.

    Google Scholar 

  • Herrera C.M., Jordano P., López-Soria L. and Amat J.A. 1994. Recruitment of a mast-fruiting, bird-dispersed tree: bridging frugivore activity and seedling establishment. Ecological Monographs 64: 315–344.

    Google Scholar 

  • Holl K.D. 1998. Do bird perch structures elevate seed rain and seedling establishment in abandoned tropical pasture? Restoration Ecology 6: 253–261.

    Google Scholar 

  • Hoppes W.G. 1988. Seedfall pattern of several species of bird-dispersed plants in an Illinois woodland. Ecology 69: 320–329.

    Google Scholar 

  • Howe H.F.1980. Monkey dispersal and waste of a neotropical fruit.Ecology 61: 944–959.

    Google Scholar 

  • Howe H.F. and de Steven D.1979.Fruit production, migrant bird visitation, and seed dispersal of Guarea glabra in Panama.Oecologia 39: 185–196.

    PubMed  Google Scholar 

  • Howe H.F. and Estabrook G.F.1977.On intraspecific competition for avian dispersers in tropical trees.American Naturalist 111: 817–823.

    Google Scholar 

  • Howe H.F. and Smallwood J.1982.Ecology of seed dispersal. Annual Review of Ecology and Systematics 13: 201–228.

    Google Scholar 

  • Howe H.F. and van de Kerckhove G.A.1979. Fecundity and seed dispersal of a tropical tree. Ecology 60: 180–189.

    Google Scholar 

  • Howe H.F. and van de Kerckhove G.A.1980.Nutmeg dispersal by tropical birds.Science210: 925–927.

    CAS  PubMed  Google Scholar 

  • Howe H.F. and van de Kerckhove G.A.1981. Removal of wild nutmeg (Virola surinamensis) crops by birds. Ecology 62: 1093–1106.

    Google Scholar 

  • Izhaki I., Walton P.B. and Safriel U.N. 1991. Seed shadows generated by frugivorous birds in an eastern Mediterranean scrub. Journal of Ecology 79: 575–590.

    Google Scholar 

  • Johnson R.A., Willson M.F. and Thompson J.N. 1985. Nutritional values of wild fruits and consumption by migrant frugivorous birds. Ecology 66: 819–827.

    Google Scholar 

  • Jordano P. 1995. Frugivore-mediated selection on fruit and seed size: birds and St. Lucie's Cherry, Prunus mahaleb. Ecology 76: 2627–2639.

    Google Scholar 

  • Kollmann J. 1995. Regeneration window for fleshy-fruited plants during scrub development on abandoned grassland. Écoscience 2: 213–222.

    Google Scholar 

  • Kollmann J. and Pirl M. 1995. Spatial pattern of seed rain of fleshy-fruited plants in a scrubland-grassland transition. Acta OEcologica 16: 313–329.

    Google Scholar 

  • Kominami Y. 1987. Removal of Viburnum dilatatum fruit by avian frugivores. Ecological Review 21: 101–106.

    Google Scholar 

  • Kominami Y., Tanouti H. and Sato T. 1998. Spatial pattern of bird-dispersed seed rain of Daphniphyllum macropodum in an evergreen broad-leaved forest. Journal of Sustainable Forestry 6: 187–201.

    Google Scholar 

  • Lane S.J. 1997. Preferences and apparent digestibilities of sugars by fruit damaging birds in Japan. Annals of Applied Biology 130: 361–370.

    CAS  Google Scholar 

  • Laska M.S. and Stiles E.W. 1994. Effects of fruit crop size on intensity of fruit removal in Vibrunum prunifolium (Caprifoliaceae). Oikos 69: 199–202.

    Google Scholar 

  • Levey D.J. 1987. Seed size and fruit-handling techniques of avian frugivores. American Naturalist 129: 471–485.

    Google Scholar 

  • Levey D.J., Moermond T.C. and Denslow J.S. 1984. Fruit choice in neotropical birds: the effect of distance between fruits on preference patterns. Ecology 65: 844–850.

    Google Scholar 

  • Manasse R.S. and Howe H.F. 1983. Competition for dispersal agents among tropical trees: influences of neighbors. Oecologia 59: 185–190.

    PubMed  Google Scholar 

  • Martin T.E. 1985. Resource selection by tropical frugivorous birds: integrating multiple interactions. Oecologia 66: 563–573.

    PubMed  Google Scholar 

  • Masaki T., Kominami Y. and Nakashizuka T. 1994. Spatial and seasonal patterns of seed dissemination of Cornus controversa in a temperate forest. Ecology 75: 1903–1910.

    Google Scholar 

  • McClanahan T.R. and Wolfe R.W. 1987. Dispersal of ornithochorous seeds from forest edges in central Florida. Vegetatio 71: 107–112.

    Google Scholar 

  • McClanahan T.R. and Wolfe R.W. 1993. Accelerating forest succession in a fragmented landscape: the role of birds and perches. Conservation Biology 7: 279–287.

    Google Scholar 

  • McDonnell M.J. 1986. Old field vegetation height and the dispersal pattern of bird-disseminated woody plants. Bulletin of the Torrey Botanical Club 113: 6–11.

    Google Scholar 

  • McDonnell M.J. and Stiles E.W. 1983. The structural complexity of old field vegetation and the recruitment of bird-dispersed plant species. Oecologia 56: 109–116.

    PubMed  Google Scholar 

  • McKey D. 1975. The ecology of coevolved seed dispersal systems, pp. 159–191. In: Gilbert L.E. and Raven P.H. (eds), Coevolution of animals and plants. University of Texas, Austin, Texas, USA.

    Google Scholar 

  • Moermond T.C. and Denslow J.S. 1983. Fruit choice in neotropical birds: effects of fruit type and accessibility on selectivity. Journal of Animal Ecology 52: 407–420.

    Google Scholar 

  • Moermond T.C., Denslow J.S., Levey D.J. and Santana C.E. 1986. The influence of morphology on fruit choice in neotropical birds. pp. 137–146. In: Estrada A. and Fleming T.H. (eds), Frugivores and Seed Dispersal. Junk, Boston, USA.

    Google Scholar 

  • Moore L.A. and Willson M.F. 1982. The effect of microhabitat, spatial distribution, and display size on dispersal of Lindera benzoin by avian frugivores. Canadian Journal of Botany 60: 557–560.

    Google Scholar 

  • Morden-Moore A.L. and Willson M.F. 1982. On the ecological significance of fruit color in Prunus serotina and Rubus occidentalis: field experiments. Canadian Journal of Botany 60: 1554–1560.

    Google Scholar 

  • Murray K.G. 1987. Selection for optimal fruit-crop size in bird-dispersed plats. American Naturalist 129: 18–31.

    Google Scholar 

  • Murray K.G. 1988. Avian seed dispersal of three neotropical gap-dependent plants. Ecological Monographs 58: 271–298.

    Google Scholar 

  • Nakanishi H. 1991. Annual, monthly and daily variations of avian seed dispersal in an urban area. Hikobia 11: 73–83.

    Google Scholar 

  • Nathan R. and Muller-Landau H.C. 2000. Spatial patterns of seed dispersal, their determinations and consequences for recruitment. Tree 15: 278–285.

    CAS  PubMed  Google Scholar 

  • Noma N. and Yumoto T. 1997. Fruiting phenology of animal-dispersed plants in response to winter migration of frugivores in a warm temperate forest on Yakushima Island, Japan. Ecological Research 12: 119–129.

    Google Scholar 

  • Rey P.J. and Alcántara J.M. 2000. Recruitment dynamics of a fleshy-fruited plant (Olea europaea): connecting patterns of seed dispersal to seedling establishment. Journal of Ecology 88: 622–633.

    Google Scholar 

  • Robinson G.R. and Handel S.N. 1993. Forest restoration on a closed landfill: rapid addition of new species by bird dispersal. Conservation Biology 7: 271–277.

    Google Scholar 

  • Sallabanks R. 1992. Fruit fate, frugivory, and fruit characteristics: a study of the hawthorn, Crataegus monogyna ( Rosaceae ). Oecologia 91: 296–304.

    PubMed  Google Scholar 

  • Sallabanks R. 1993. Hierarchical mechanisms of fruit selection by an avian frugivore. Ecology 74: 1326–1336.

    Google Scholar 

  • Sargent S. 1990. Neighborhood effects on fruit removal by birds: a field experiment with Viburnum dentatum (Caprifoliaceae). Ecology 71: 1289–1298.

    Google Scholar 

  • Slocum M.G. and Horvitz C.C. 2000. Seed arrival under different genera of trees in a neotropical pasture. Plant Ecology 149: 51–62.

    Google Scholar 

  • Sorensen A.E. 1984. Nutrition, energy, and passage time: experiments with fruit preference in European blackbirds (Turdus merula). Journal of Animal Ecology 53: 545–557.

    Google Scholar 

  • Stapanian M.A.1982.Evolution of fruiting strategies among fleshy-fruited plant species of Eastern Kansas. Ecology63:1422–1431.

    Google Scholar 

  • Stapanian M.A.1986.Seed dispersal by birds and squirrels in the deciduous forests of the United States, pp. 225–236. In: Estrada A. and Fleming T.H. (eds), Frugivores and seed dispersal. Dr. W. Junk, Dordrecht, The Netherlands.

    Google Scholar 

  • Stiles E.W. 1982. Fruit flags: two hypotheses. American Naturalist 120: 500–509.

    Google Scholar 

  • Stiles E.W. 1989. Fruits, seeds, and dispersal agents, pp. 87–122. In: Abrahamson W.G. (ed.), Plant-animal interactions. McGraw-Hill, New York. New York, USA.

    Google Scholar 

  • Terborgh J. and Diamond J.M. 1970. Niche overlap in feeding assemblages of New Guinea birds. the Wilson Bulletin 82: 29–52.

    Google Scholar 

  • Toh I., Gillespie M. and Lamb D. 1999. The role of isolated trees in facilitating tree seedling recruitment at a degraded sub-tropical rainforest site. Restoration Ecology 7: 288–297.

    Google Scholar 

  • Uhl C., Clark H., Clark K. and Maquirino P. 1982. Successional patterns associated with slash-and-burn agriculture in the upper Río Negro region of the Amazon Basin. Biotropica 14: 249–254.

    Google Scholar 

  • VerdÚ M. and García-Fayos P. 1996. Nucleation processes in a Mediterranean bird-dispersed plant. Functional Ecology 10: 275–280.

    Google Scholar 

  • Wheelwright N.T. 1985. Fruit size, gape width, and the diets of fruit-eating birds. Ecology 66: 808–818.

    Google Scholar 

  • Whelan C.J. and Willson M.F. 1994. Fruit choice in migrating North American birds: field and aviary experiments. Oikos 71: 137–151.

    Google Scholar 

  • Willson M.F. 1986. Avian frugivory and seed dispersal in eastern North America. pp. 223–279. In: Johnston R.F. (ed.), Current Ornithology, vol. 3. Plenum Press, New York. New York, USA.

    Google Scholar 

  • Willson M.F. 1993. Dispersal mode, seed shadows, and colonization patterns. Vegetatio 107/108: 261–280.

    Google Scholar 

  • Willson M.F. and Crome F.H.J. 1989. Patterns of seed rain at the edge of a tropical Queensland rain forest. Journal of Tropical Ecology 5: 301–308.

    Google Scholar 

  • Willson M.F. and Melampy M.N. 1983. The effect of bicolored fruit displays on fruit removal by avian frugivores. Oikos 41: 27–31.

    Google Scholar 

  • Willson M.F. and Thompson J.N. 1982. Phenology and ecology of color in bird-dispersed fruits, or why some fruits are red when they are “green”. Canadian Journal of Botany 60: 701–713.

    Google Scholar 

  • Willson M.F. and Traveset A. 2000. The ecology of seed dispersal, pp. 85–110. In: Fenner M. (ed.), Seeds: The ecology of regeneration in plant communities, 2nd ed. CABI Publishing, New York, New York, USA.

    Google Scholar 

  • Willson M.R., Irvine A.K. and Walsh N.G. 1989. Vertebrate-dispersal syndromes in some Australian and New Zealand plant communities with geographical comparisons. Biotropica 21: 133–147.

    Google Scholar 

  • Yagihashi T., Hayashida M. and Miyamoto T. 1998. Effects of bird ingestion on seed germination of Sorbus commixta. Oecologia 114: 209–212.

    PubMed  Google Scholar 

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Takahashi, K., Kamitani, T. Factors affecting seed rain beneath fleshy-fruited plants. Plant Ecology 174, 247–256 (2004). https://doi.org/10.1023/B:VEGE.0000049105.30878.25

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