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Geographic variations in seed dispersal by ants: are plant and seed traits decisive?

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Abstract

The effect of local ant species on the dispersal success of a myrmecochorous plant, Helleborus foetidus, was analyzed in two populations of the Iberian Peninsula (Caurel and Cazorla, respectively). The contribution of the various local ant species to dispersal was very unequal. While 5 and 19 ant taxa visited the plants of Caurel and Cazorla, respectively, most removal activity (67 and 80%) was performed by two species only (Formica lugubris and Camponotus cruentatus, respectively). Visits by dispersers were also unequally distributed between neighboring plants. While some plants were always visited during the period of seed release, others were never visited. A regression model indicated that this pattern might be explained by two plant traits: ants preferred to visit plants that released more seeds and whose elaiosomes were richer in oleic acid. Although it has long been known that this compound triggers removal by ants, it is the first demonstration that quantitative variations in elaiosome traits contribute to variation in dispersal success. Finally, other variables being equal, morphological traits (seed size, elaiosome size, and elaiosome/seed size ratio) did not affect ant behavior. Although myrmecochory has long been considered a diffuse interaction, our results support the idea that, at local scale, a limited number of ant species may be decisive to its evolution.

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References

  • Beattie A, Hughes L (2002) Ant–plant interactions. In: Herrera CM, Pellmyr O (eds) Plant animal interactions. Blackwell, Oxford, pp 221–235

    Google Scholar 

  • Bono JM, Heithaus ER (2002) Sex ratios and the distribution of elaiosomes in colonies of the ant Aphaenogaster rudis. Insectes Soc 49:320–325

    Article  Google Scholar 

  • Boulay R, Coll-Toledano J, Cerdá X (2006) Geographic variations in Helleborus foetidus elaiosome lipid composition: implications for dispersal by ants. Chemoecology 16:1–7

    Article  CAS  Google Scholar 

  • Brew CR, O’Dowd DJ, Rae ID (1989) Seed dispersal by ants: behaviour-releasing compounds in elaiosomes. Oecologia 80:490–497

    Article  Google Scholar 

  • Cushman JH, Lawton JH, Manly BFJ (1993) Latitudinal patterns in European ant assemblages: variation in species richness and body size. Oecologia 95:30–37

    Google Scholar 

  • Fischer RC, Olzant SM, Wanek W, Mayer V (2005) The fate of Corydalis cava elaiosomes within an ant colony of Myrmica rubra: elaiosomes are preferentially fed to larvae. Insectes Soc 52:55–62

    Article  Google Scholar 

  • Gammans N, Bullock JM, Schonrogge K (2005) Ant benefits in a seed dispersal mutualism. Oecologia 146:43–49

    Article  PubMed  Google Scholar 

  • Garrido JL, Rey PJ, Cerdá X, Herrera CM (2002) Geographical variation in diaspore traits of an ant-dispersed plant (Helleborus foetidus): are ant community composition and diaspore traits correlated. J Ecol 90:446–455

    Article  Google Scholar 

  • Giladi I (2006) Choosing benefits or partners: a review of the evidences for the evolution of myrmecochory. Oikos 112:481–492

    Article  Google Scholar 

  • Gorb SN, Gorb EV (1999) Effects of ant species composition on seed removal in deciduous forest in eastern Europe. Oikos 84:110–118

    Article  Google Scholar 

  • Gorb E, Gorb S (2000) Effects of seed aggregation on the removal rates of elaiosome-bearing Chelidonium majus and Viola odorata seeds carried by Formica polyctena ants. Ecol Res 15:187–192

    Article  Google Scholar 

  • Hughes L, Westoby M, Jurado E (1994) Convergence of elaiosomes and insect prey: evidence from ant foraging behavior and fatty acid composition. Funct Ecol 8:358–365

    Article  Google Scholar 

  • Jordano P, Schupp EW (2000) Seed disperser effectiveness: the quantity component and patterns of seed rain for Prunus mahaleb. Ecol Monogr 70:591–615

    Article  Google Scholar 

  • Mark S, Olesen JM (1996) Importance of elaiosome size to removal of ant-dispersed seeds. Oecologia 107:95–101

    Article  Google Scholar 

  • Marshall DL, Beattie AJ, Bollenbacher WE (1979) Evidence for diglycerides as attractants in an ant-seed interaction. J Chem Ecol 5:335–344

    Article  CAS  Google Scholar 

  • Mayer V, Ölzant S, Fischer RC (2005) Myrmecochorous seed dispersal in temperate regions. In: Forget PM, Lambert JE, Hulme PE, Vander Wall SB (eds) Seed fate: predation, dispersal and seedling establishment. CABI, Cambridge, pp 173–196

    Google Scholar 

  • Morales MA, Heithaus ER (1998) Food from seed-dispersal mutualism shifts sex ratios in colonies of the ant Aphaenogaster rudis. Ecology 79:734–739

    Article  Google Scholar 

  • Peters M, Oberrath R, Bohning-Gaese K (2003) Seed dispersal by ants: are seed preferences influenced by foraging strategies or historical constraints? Flora 198:413–420

    Google Scholar 

  • Retana J, Cerdá X (2000) Patterns of diversity and composition of Mediterranean ground ant communities tracking spatial and temporal variability in the thermal environment. Oecologia 123:436–444

    Article  Google Scholar 

  • Schupp EW (1993) Quantity, quality and the effectiveness of seed dispersal by animals. Vegetatio 108:15–29

    Google Scholar 

  • Skidmore BA, Heithaus RE (1988) Lipid cues for seed-carrying by ants in Hepatica americana. J Chem Ecol 14:2185–2196

    Article  CAS  Google Scholar 

  • Thompson JD (2005) The geographic mosaic of coevolution. The University of Chicago Press, Chicago

    Google Scholar 

Download references

Acknowledgements

This research was supported by the Spanish “Ministerio de Educacion y Ciencia” (project BOS2003-01536). RB was funded by the European Commission (Marie Curie Individual Fellowship # HPMF-CT-2002-01565). All experiments comply with Spanish laws. We thank J. Retana, D. Serrano, J. Figuerola, and A. Valido for their helpful comments and statistical advices.

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Boulay, R., Coll-Toledano, J., Manzaneda, A.J. et al. Geographic variations in seed dispersal by ants: are plant and seed traits decisive?. Naturwissenschaften 94, 242–246 (2007). https://doi.org/10.1007/s00114-006-0185-z

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  • DOI: https://doi.org/10.1007/s00114-006-0185-z

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