Artículos de revistas
Ants Have A Negative Rather Than A Positive Effect On Extrafloral Nectaried Crotalaria Pallida Performance
Registro en:
Acta Oecologica. , v. 51, n. , p. 49 - 53, 2013.
1146609X
10.1016/j.actao.2013.05.012
2-s2.0-84879741085
Autor
Pereira M.F.
Trigo J.R.
Institución
Resumen
Crotalaria pallida (Fabaceae) is a pantropical plant with extrafloral nectaries (EFNs) near the reproductive structures. EFN-visiting ants attack and remove arctiid moth Utetheisa ornatrix larvae, the main pre-dispersal seed predator, but the impact of ants on C.pallida fitness is unknown. To assess this impact, we controlled ant presence on plants and evaluated the reproductive output of C.pallida with and without ants. Predatory wasps also visit EFNs, prey upon U.ornatrix larvae, and may be driven out by ants during EFN feeding. Does this agonistic interaction affect the multitrophic interaction outcome? We found it difficult to evaluate the effect of both visitors because cages excluding wasps affect plant growth and do not allow U.ornatrix oviposition. Therefore, we verified whether ant presence inhibited wasp EFN visitation and predicted that (1) if ants confer a benefit for C.pallida, any negative effect of ants on wasps would be negligible for the plant because ants would be the best guardians, and (2) if ants are poor guardians, they would negatively affect wasps and negatively impact the fitness of C.pallida. Surprisingly, we found that the number of seeds/pods significantly increased, ca. 4.7 times, after ant removal. Additionally, we unexpectedly verified that controls showed a higher percentage of herbivore bored pods than ant-excluded plants. We found that wasps spent less time visiting EFNs patrolled by ants (ca. 299 s less). These results support our second prediction and suggest that the outcome of multitrophic interactions may vary with natural enemy actors. © 2013 Elsevier Masson SAS. 51
49 53 Almeida, E.C., Biologia floral e mecanismo de reprodução em Crotalaria mucronata (1986) Desv. Rev. Ceres, 33, pp. 529-540 Cogni, R., Resistance to plant invasion? A native specialist herbivore shows preference for and higher fitness on an introduced host (2010) Biotropica, 42, pp. 188-193 Conner, W.E., Utetheisa ornatrix, the ornate arctiid (2009) Tiger Moths and Wooly Bears. Behaviour, Ecology, and Evolution of the Arctiidae, pp. 1-10. , Oxford University Press, New York, W.E. Conner (Ed.) Da Costa, M.A., Phylogeny of Utetheisa s. str. (Lepidoptera: Noctuidae: Arctinae) with comments on the evolution of colour, hind wing scales and origin of New World species (2010) Invert. Syst., 24, pp. 113-130 Cuautle, M., Rico-Gray, V., The effect of wasps and ants on the reproductive success of the extrafloral nectaried plant Turnera ulmifolia (Turneraceae) (2003) Func. Ecol., 17, pp. 417-423 Davidson, D.E., Cook, S.C., Snelling, R.R., Chua, T.H., Canopies explaining the abundance of ants in lowland tropical rainforest (2003) Science, 300, pp. 969-972 Del-Claro, K., Berto, V., Réu, W., Herbivore deterrence by visiting ants increases fruit-set in an extrafloral nectary plant Qualea multiflora (Vochysiaceae) in cerrado vegetation (1996) J.Trop. Ecol., 12, pp. 887-892 Díaz-Castelazo, C., Rico-Gray, V., Ortega, F., Ángeles, G., Morphological and secretory characterization of extrafloral nectaries in plants of Coastal Veracruz, México (2005) Ann. Bot., 96, pp. 1175-1189 Ferro, V.G., (2001) Padrões de utilização de Crotalaria spp. (Leguminosae, Papilionoideae, Crotalarieae) por larvas de Utetheisa ornatrix (Lepidoptera, Arctiidae), , Universidade Estadual de Campinas, Campinas, São Paulo, Brazil, (MSc thesis) Ferro, V.G., Guimarães, P.R., Trigo, J.R., Why do larvae of Utetheisa ornatrix penetrate and feed in pods of Crotalaria species? Larval performance vs. chemical and physical constraints (2006) Entomol. Exp. Appl., 121, pp. 23-29 Guimarães, P.R., Raimundo, R.L.G., Bottcher, C., Silva, R.R., Trigo, J.R., Extrafloral nectaries as a deterrent mechanism against seed predators in the chemically defended weed Crotalaria pallida (Leguminosae) (2006) Austral Ecol., 31, pp. 776-782 Howard, K.J., Jeanne, R.L., Shifting foraging strategies in colonies of the social wasp Polybia occidentalis (Hymenoptera, Vespidae) (2005) Behav. Ecol. Sociobiol., 57, pp. 481-489 Koptur, S., Alternative defenses against herbivores in Inga (Fabaceae: Mimosoideae) over an elevation gradient (1985) Ecology, 66, pp. 1639-1650 Lorenzi, H., (2000) Plantas daninhas do Brasil: terrestres, aquáticas, parasitas e tóxicas, , Plantarum, Nova Odessa, Brasil Lundgren, J.G., Relationships of Natural Enemies and Non-prey Foods (2009) Progress in Biological Control, 7. , Springer, Germany Mathews, C.R., Bottrell, D.G., Brown, M.W., Interactions between extrafloral nectaries, ants (Hymenoptera: Formicidae), and other natural enemies affect biological control of Grapholita molesta (Lepidoptera: Tortricidae) on peach (Rosales: Rosaceae) (2011) Environ. Entomol., 40, pp. 42-51 Melo, Y., Machado, S.R., Alves, M., Anatomy of extrafloral nectaries in Fabaceae from dry-seasonal forest in Brazil (2010) Bot. J. Linn. Soc., 163, pp. 87-98 Mody, K., Linsenmair, K.E., Plant-attracted ants affect arthropod community structure but not necessarily herbivory (2004) Ecol. Entomol., 29, pp. 217-225 Nogueira, A., Guimarães, E., Machado, S.R., Lohmann, L.G., Do extrafloral nectarines present a defensive role against herbivores in two species of the family Bignoniaceae in a Neotropical savannas? (2012) Plant Ecol., 213, pp. 289-301 O'Dowd, D.J., Catchpole, E.A., Ants and extrafloral nectaries: no evidence for plant protection in Helichrysum spp.-ant interactions (1983) Oecologia, 59, pp. 191-200 Pemberton, R.W., Observations of extrafloral nectar feeding by predaceous and fungivorous mites (1993) Proc. Entomol. Soc. Wash, 95, pp. 642-643 Pemberton, R.W., Lee, J.H., The influence of extra-floral nectaries on parasitism of an insect herbivore (1996) Am. J. Bot., 83, pp. 1187-1194 Polhill, R.M., (1982) Crotalaria in Africa and Madagascar, , Balkema, Rotterdam Prezoto, F., Lima, M.A.P., Machado, V.L.L., Survey of preys captured and used by Polybia platycephala (Richards) (Hymenoptera: Vespidae, Epiponini) (2005) Neotrop. Entomol., 34, pp. 849-851 Raveret-Richter, M., Social wasp (Hymenoptera: Vespidae) foraging behavior (2000) Annu. Rev. Entomol., 45, pp. 121-150 Rico-Gray, V., Oliveira, P.S., (2007) The Ecology and Evolution of Ant-plant Interactions, , The University of Chicago Press, Chicago Romero, G.Q., Koricheva, J., Contrasting cascade effects of carnivores on plant fitness: a meta-analysis (2011) J.Anim. Ecol., 80, pp. 696-704 Rosenheim, J.A., Kaya, H.K., Ehler, L.W., Jarois, J.J., Jaffee, B.A., Intraguild predation among biological-control agents: theory and evidence (1995) Biol. Control., 5, pp. 303-335 Stamp, N.E., Bowers, M.D., Direct and indirect effects of predatory wasps (Polistes sp.: Vespidae) on gregarious caterpillars (Hemileuca lucina: Saturniidae) (1988) Oecologia, 75, pp. 619-624 Thompson, J.N., (2005) The Geographic Mosaic of Coevolution, , The University of Chicago Press, Chicago Trigo, J.R., Effects of pyrrolizidine alkaloids through different trophic levels (2011) Phytochem. Rev., 10, pp. 83-98 Wäckers, F., Suitability of (extra-)floral nectar, pollen, and honeydew as insect food sources (2005) Plant-provided Food for Carnivorous Insects. A Protective Mutualism and Its Applications, pp. 17-74. , Cambridge University Press, Cambridge, F.L. Wäckers, P.C.J. Vand Rijn, J. Bruin (Eds.) Zar, J.H., (1999) Biostatistical Analysis, , Prentice Hall, New Jersey