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Savanna fires increase rates and distances of seed dispersal by ants - Oecologia

  • ️Duffaud, C.
  • ️Wed Oct 11 2006
  • Andersen AN (1982) Seed removal by ants in the mallee of northwestern Victoria. In: Buckley RC (eds) Ant-plant interactions in Australia. Junk, The Hague, pp 31–44

    Google Scholar 

  • Andersen AN (1988a) Dispersal distance as a benefit of myrmecochory. Oecologia 75:507–511

    Article  Google Scholar 

  • Andersen AN (1988b) Immediate and longer-term effects of fire on seed predation by ants in sclerophyllous vegetation in south-eastern Australia. Aust J Ecol 13:285–293

    Article  Google Scholar 

  • Andersen AN (1991) Responses of ground foraging ant communities to three experimental fire regimes in a savanna forest of tropical Australia. Biotropica 23:575–585

    Article  Google Scholar 

  • Andersen AN (2003) Ant biodiversity in arid Australia: productivity, species richness and community organisation. Rec South Aust Mus Monogr Ser 7:79–92

    Google Scholar 

  • Andersen AN, Morrison SC (1998) Myrmecochory in Australia’s seasonal tropics: effects of disturbance on distance dispersal. Aust J Ecol 23:483–491

    Article  Google Scholar 

  • Andersen AN, Cook GD, Williams RJ (eds) (2003) Fire in tropical savannas: the Kapalga experiment. Springer, Berlin Heidelberg New York

  • Antonovics J, Clay K, Schmitt J (1987) The measurement of small-scale environmental heterogeneity using clonal transplants of Anthoxanthum odoratum and Danthonia spicata. Oecologia 71:601–607

    Article  Google Scholar 

  • Auld TD, Denham AJ (1999) The role of ants and mammals in dispersal and post-dispersal seed predation of the shrubs Grevillea (Proteaceae). Plant Ecol 144:201–213

    Article  Google Scholar 

  • Beattie AJ (1983) Distribution of ant-dispersed plants. Sonderbd Naturwiss Ver Hamb 7:249–270

    Google Scholar 

  • Beattie AJ (1985) The evolutionary ecology of ant–plant mutualisms. Cambridge University Press, Cambridge

    Google Scholar 

  • Beattie AJ, Culver DC (1981) The guild of myrmecochores in the herbaceous flora of West Virginia forests. Ecology 62:107–115

    Article  Google Scholar 

  • Berg RY (1975) Myrmecochorous plants in Australia and their dispersal by ants. Aust J Bot 23:475–508

    Article  Google Scholar 

  • Bestelmeyer BT, Wiens JA (2003) Scavenging ant foraging behaviour and variation in the scale of nutrient redistribution among semi-arid grasslands. J Arid Environ 53:373–386

    Article  Google Scholar 

  • Bond W, Slingsby P (1984) Collapse of an ant-plant mutualism: the Argentine ant (Iridomyrmex humilis) and myrmecochorous Proteaceae. Ecology 65:1031–1037

    Article  Google Scholar 

  • Bond WJ, Stock WD (1989) The costs of leaving home: ants disperse myrmecochorous seeds to low nutrient sites. Oecologia 81:412–417

    Google Scholar 

  • Bond WJ, van Wilgen BW (1996) Fire and plants. Chapman & Hall, London

    Google Scholar 

  • Boyd RS (2001) Ecological benefits of myrmecochory for the endangered chaparral shrub Fremontodendron decumbens (Sterculiaceae). Am J Bot 88:234–241

    Article  PubMed  Google Scholar 

  • Bradstock RA, Williams JE, Gill AM (eds) (2002) Flammable Australia: the fire regimes and biodiversity of a continent. Cambridge University Press, Cambridge

  • Brennan K (1996) Flowering and fruiting phinology of native plants in the Alligator Rivers Region with particular reference to the Ranger uranium mine. Supervising scientist report 107, Commonwealth of Australia

  • Brock J (1988) Top End Native Plants. Brock, Darwin

    Google Scholar 

  • Christian CE (2001) Consequences of biological invasion reveal importance of mutualism for plant communities. Nature 413:635–639

    Article  PubMed  CAS  Google Scholar 

  • Christian CE, Stanton ML (2004) Cryptic consequences of a dispersal mutualism: seed burial, elaiosome removal, and seed-bank dynamics. Ecology 85:1101–1110

    Article  Google Scholar 

  • Cowling RM (1992) Ecology of fynbos: nutrients, fire and diversity. Oxford University Press, Oxford

    Google Scholar 

  • Crist TO, Wiens JA (1994) Scale effects of vegetation on forager movement and seed harvesting by ants. Oikos 69:37–46

    Article  Google Scholar 

  • Culver DC, Beattie AJ (1978) Myrmecochory in Viola: dynamics of seed-ant interactions in some West Virginia species. J Ecol 66:53–72

    Article  Google Scholar 

  • Davidson DW, Morton SR (1981) Myrmecochory in some plants (f. Chenopodiaceae) of the Australian arid zone. Oecologia 50:357–366

    Article  Google Scholar 

  • Farji-Brener AG, Corley JC, Bettinelli J (2002) The effects of fire on ant communities in north-western Patagonia: the importance of habitat structure and regional context. Divers Distrib 8:235–243

    Article  Google Scholar 

  • Fewell JH (1988) Energetic and time costs of foraging in harvester ants, Pogonomyrmex occidentalis. Behav Ecol Sociobiol 22:401–408

    Article  Google Scholar 

  • Flora of Australia (2001) Mimosaceae, Acacia, part 2, vol 11B. ABRS/CSIRO, Melbourne

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

    Article  Google Scholar 

  • Gómez C, Espadaler X (1998) Myrmecochorous dispersal distances: a world survey. J Biogeogr 25:573–580

    Article  Google Scholar 

  • Gómez C, Espadaler X, Bas JM (2005) Ant behaviour and seed morphology: a missing link of myrmecochory. Oecologia 146:244–246

    Article  PubMed  Google Scholar 

  • Hoffmann BD (2003) Responses of ant communities to experimental fire regimes on rangelands in the Victoria River District of the Northern Territory. Aust Ecol 28:182–195

    Article  Google Scholar 

  • Hughes L, Westoby M (1992) Fate of seeds adapted for dispersal by ants in Australian sclerophyll vegetation. Ecology 73:1285–1299

    Article  Google Scholar 

  • Kaspari M, Weiser MD (1999) The size-grain hypothesis and interspecific scaling in ants. Funct Ecol 13:530–538

    Article  Google Scholar 

  • Keith DA, McCaw WL, Whelan RJ (2002) Fire regimes in Australian heathlands and their effects of plants and animals. In: Bradstock RA, Williams JE, Gill AM (eds) Flammable Australia: the fire regimes and biodiversity of a continent. Cambridge University Press, Cambridge, pp 199–280

    Google Scholar 

  • Majer JD (1980) The influence of ants on broadcast and naturally spread seeds in rehabilitated bauxite mined areas. Reclam Rev 3:3–9

    Google Scholar 

  • McGlynn TP, Shotell MD, Kelly MS (2003) Responding to a variable environment: home range, foraging behaviour and nest relocation in the Costa Rican rainforest ant Aphaenogaster araneoides. J Insect Behav 16:687–701

    Article  Google Scholar 

  • Nielsen MG (2001) Energetic costs of foraging in the ant Rhytidoponera aurata in tropical Australia. Physiol Entomol 26:248–253

    Article  Google Scholar 

  • Ness JH (2004) Forest edges and fire ants alter the seed shadow of an ant-dispersed plant. Oecologia 138:448–454

    Article  PubMed  CAS  Google Scholar 

  • Ness JH, Bronstein JL, Andersen AN, Holland JN (2004) Ant body size predicts dispersal distance of ant-adapted seeds: implications of small-ant invasions. Ecology 85:1244–1250

    Article  Google Scholar 

  • Ness JH, Bressmer K (2005) Abiotic influences on the behaviour of rodents, ants and plants affect an ant–seed mutualism. Ecoscience 12:76–81

    Article  Google Scholar 

  • O’Dowd DJ, Hay ME (1980) Mutualism between harvester ants and a desert ephemeral: seed escape from rodents. Ecology 61:531–540

    Article  Google Scholar 

  • Parr CL, Robertson HG, Biggs HC, Chown SL (2004) Response of African savanna ants to long-term fire regimes. J Appl Ecol 41:630–642

    Article  Google Scholar 

  • Russell-Smith J, Ryan PG, Klessa D, Waight G, Harwood R (1998) Fire regimes, fire-sensitive vegetation and fire management of the sandstone Arnhem Plateau, monsoonal northern Australia. J Appl Ecol 35:829–846

    Article  Google Scholar 

  • Sanders NJ, Gordon DM (2002) Resources and the flexible allocation of work in the desert ant, Aphaenogaster cockerelli. Insect Soc 49:371–379

    Article  Google Scholar 

  • Usnick SJ (2000) Foraging distance of Pogonomyrmex occidentalis (Hymenoptera: Formicidae) on grazed and ungrazed shortgrass prairies in Colorado. Entomol News 111:201–205

    Google Scholar 

  • Westoby M, Rice BL, Shelley JM, Haig D, Kohen JL (1982) Plants’ use of ants for dispersal at West Head, New South Wales. In: Buckley RC (eds) Ant–plant interactions in Australia. Junk, The Hague, pp 75–87

    Google Scholar 

  • Whitney KD (2002) Dispersal for distance? Acacia ligulata seeds and meat ants Iridomyrmex viridiaeneus. Aust Ecol 27:589–595

    Article  Google Scholar 

  • Willliams RJ, Gill AM, Moore PHR (1998) Seasonal changes in fire behaviour in a tropical savanna in Northern Australia. Int J Wildland Fire 8:227–239

    Article  Google Scholar 

  • Williams RJ, Gill AM, Moore PHR (2003) Fire behavior. In: Andersen AN, Cook GD, Williams RJ (eds) Fire in tropical savannas: the Kapalga experiment. Springer, Berlin Heidelberg New York, pp 33–46

  • York A (1999) Long-term effects of frequent low-intensity burning on the abundance of litter-dwelling invertebrates in coastal blackbutt forests of southeastern Australia. J Insect Conserv 3:191–199

    Article  Google Scholar