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Drone aggregation behavior in the social wasp Vespula germanica (Hymenoptera: Vespidae): Effect of kinship and density

  • 1.

    Keller, L. & Waller, D. Inbreeding effects in wild populations. Trends Ecol. Evol. 17, 203–241 (2002).

    • Google Scholar
  • 2.

    Tabadkani, S. M., Nozari, J. & Lihoreau, M. Inbreeding and the evolution of sociality in arthropods. Naturwissenschaften 99, 779–788 (2012).

  • 3.

    Van Wilgenburg, E., Driessen, G. & Beukeboom, L. W. Single locus complementary sex determination in Hymenoptera: An ‘unintelligent’ design? Front. Zool. 3, 1–15 (2006).

    • Article
    • Google Scholar
  • 4.

    Ross, K. G. & Fletcher, D. J. C. Diploid male production – a significant colony mortality factor in the fire ant Solenopsis invicta (Hymenoptera: Formicidae). Behav. Ecol. Sociobiol. 19, 283–291 (1986).

    • Article
    • Google Scholar
  • 5.

    Heimpel, G. E. & de Boer, J. G. Sex Determination in the Hymenoptera. Annu. Rev. Entomol. 53, 209–230 (2008).

  • 6.

    Whitehorn, P. R., Tinsley, M. C., Brown, M. J., Darvill, B. & Goulson, D. Impacts of inbreeding on bumblebee colony fitness under field conditions. BMC Evol. Biol. 9, 152–161 (2009).

    • Article
    • Google Scholar
  • 7.

    Bogo, G. et al. No evidence for an inbreeding avoidance system in the bumble bee Bombus terrestris. Apidologie 49, 473–483 (2018).

    • Article
    • Google Scholar
  • 8.

    Martínez, A. S., Masciocchi, M., Pisman, N., Villacide, J. M. & Corley, J. C. Mate-searching behavior in the invasive German wasp, Vespula germanica, in Patagonia. Entomol. Exp. Appl. 166, 555–564 (2018).

    • Article
    • Google Scholar
  • 9.

    Pusey, A. & Wolf, M. Inbreeding avoidance in animals. Trends Ecol. Evol. 11, 201–206 (1996).

  • 10.

    Tsutsui, N., Suarez, A. & Holway, D. Reduced genetic variation and the success of an invasive species. Proc. Natl. Acad. Sci. USA 97, 5948–5953 (2000).

  • 11.

    Bretman, A. & Wedell, N. Molecular evidence of post–copulatory inbreeding avoidance in the field cricket Gryllus bimaculatus. Proc. R. Soc. London. Ser. B Biol. Sci. 271, 159–164 (2004).

  • 12.

    Blomquist, G. & Bagnères, A. Insect hydrocarbons: biology, biochemistry, and chemical ecology. (Cambridge University Press, 2010).

  • 13.

    Dos Santos, C. F., Francisco, F., de, O., Imperatriz-Fonseca, V. L. & Arias, M. C. Eusocial bee male aggregations: Spatially and temporally separated but genetically homogenous. Entomol. Exp. Appl. 158, 320–326 (2016).

    • Article
    • Google Scholar
  • 14.

    Dos Santos, C. F., Ferreira-Caliman, M. J., Nascimento, F. S. & Bloch, G. An Alien in the group: Eusocial male bees sharing nonspecific reproductive aggregations. J. Insect Sci. 15, 1–7 (2015).

    • Article
    • Google Scholar
  • 15.

    Thornhill, R. & Alcock, J. The evolution of insect mating systems. (Harvard University Press, 1983).

  • 16.

    Sivinski, J. & Petersson, E. Mate choice and species isolation in swarming insects. In The evolution of mating systems in insects and arachnids (eds. Choe, J. & Crespi, B.) (Cambridge University Press, 1997).

  • 17.

    Paxton, R. Male mating behaviour and mating systems of bees: an overview. Apidologie 36, 145–156 (2005).

    • Article
    • Google Scholar
  • 18.

    Ayasse, M., Paxton, R. J. & Tengo, J. Mating behavior and chemical communication in the order Hymenoptera. Annu. Rev. Entomol. 46, 31–78 (2001).

  • 19.

    Shaw, A. K. & Kokko, H. Mate finding, Allee effects and selection for sex-biased dispersal. J. Anim. Ecol. 83, 1256–1267 (2014).

    • Article
    • Google Scholar
  • 20.

    Koeniger, N., Koeniger, G., Gries, M. & Tingek, S. Drone competition at drone congregation areas in four Apis species. Apidologie 36, 211–221 (2005).

    • Article
    • Google Scholar
  • 21.

    Beggs, J. R. et al. Ecological effects and management of invasive alien Vespidae. BioControl 56, 505–526 (2011).

    • Article
    • Google Scholar
  • 22.

    Willink, A. Sobre la presencia de Vespula germanica (Fabricius) en la Argentina (Himenóptera: Vespidae). Neotrop. La Plata 26, 205–206 (1980).

    • Google Scholar
  • 23.

    Masciocchi, M. & Corley, J. C. Distribution, dispersal and spread of the invasive social wasp (Vespula germanica) in Argentina. Austral Ecol. 38, 162–168 (2013).

    • Article
    • Google Scholar
  • 24.

    Dimarco, R. D., Masciocchi, M. & Corley, J. C. Managing nuisance social insects in urban environments: an overview. Int. J. Pest Manag. 63, 1–15 (2017).

    • Article
    • Google Scholar
  • 25.

    Goodisman, M. A. D., Matthews, R. W. & Crozier, R. H. Mating and reproduction in the wasp Vespula germanica. Behav. Ecol. Sociobiol. 51, 497–502 (2002).

    • Article
    • Google Scholar
  • 26.

    Brown, R. L., El-Sayed, A. M., Suckling, D. M., Stringer, L. D. & Beggs, J. R. Vespula vulgaris (Hymenoptera: Vespidae) gynes use a sex pheromone to attract males. Can. Entomol. 145, 1–9 (2013).

    • Article
    • Google Scholar
  • 27.

    Derstine, N. T., Ohler, B., Jimenez, S. I., Landolt, P. & Gries, G. Evidence for sex pheromones and inbreeding avoidance in select North American yellowjacket species. Entomol. Exp. Appl. 164, 35–44 (2017).

  • 28.

    Spradbery, J. P. Wasps: an account of the biology and natural history of solitary and social wasps. Biology (University of Washington Press, 1973).

  • 29.

    Greene, A. Dolichovespula and Vespula. In The Social Biology of Wasps 263–305 (1991).

  • 30.

    Mueller, M. Y., Moritz, R. F. A. & Kraus, F. B. Outbreeding and lack of temporal genetic structure in a drone congregation of the neotropical stingless bee Scaptotrigona mexicana. Ecol. Evol. 2, 1304–1311 (2012).

    • Article
    • Google Scholar
  • 31.

    Cappa, F., Beani, L. & Cervo, R. The importance of being yellow: Visual over chemical cues in gender recognition in a social wasp. Behav. Ecol. 27, 1182–1189 (2016).

    • Article
    • Google Scholar
  • 32.

    Gamboa, G. J. Kin recognition in eusocial wasps. Ann. Zool. Fennici 41, 789–808 (2004).

    • Google Scholar
  • 33.

    de Souza, A. R. et al. No Evidence of Intersexual Kin Recognition by Males of the Neotropical Paper Wasp Polistes versicolor. J. Insect Behav. 30, 180–187 (2017).

    • Article
    • Google Scholar
  • 34.

    Brandstaetter, A. S. & Endler, A. Nestmate recognition in ants is possible without tactile interaction. Naturwissenschaften 95, 601–608 (2008).

  • 35.

    Whitehorn, P., Tinsley, M. & Goulson, D. Kin recognition and inbreeding reluctance in bumblebees. Apidologie 40, 627–633 (2009).

    • Article
    • Google Scholar
  • 36.

    Beani, L. et al. Cuticular hydrocarbons as cues of sex and health condition in Polistes dominula wasps. Insectes Soc. https://doi.org/10.1007/s00040-019-00721-z (2019).

  • 37.

    Cervo, R., Cini, A. & Turillazzi, S. Visual recognition in wasps. In Social recognition in invertebrates (eds. Aquiloni, L. & Tricarico, E.) (Springer International Publishing, 2015).

  • 38.

    de Souza, A., Mourão, C. A., Do Nascimento, F. S. & Lino-Neto, J. Sexy faces in a male paper wasp. PLoS One 9, 1–6 (2014).

    • Article
    • Google Scholar
  • 39.

    Masciocchi, M., Martínez, A. S., Pereira, A. J., Villacide, J. M. & Corley, J. C. Dispersal behavior of yellowjacket (Vespula germanica) queens. Insect Sci. 25, 109–116 (2016).

    • Article
    • Google Scholar
  • 40.

    Eyer, P. A. et al. Inbreeding tolerance as a pre-adapted trait for invasion success in the invasive ant Brachyponera chinensis. Mol. Ecol. 27, 4711–4724 (2018).

    • PubMed
    • Google Scholar
  • 41.

    Goodisman, M. A. D., Matthews, R. W., Spradbery, J. P., Carew, M. E. & Crozier, R. H. Reproduction and Recruitment in Perennial Wasp Vespula germanica. J. Hered. 346–349 (2001).

  • 42.

    Ross, K. G. Laboratory studies of the mating biology of the eastern yellowjacket, Vespula maculifrons (Hymenoptera: Vespidae). J. Kansas Entomol. Soc. 56, 523–537 (1983).

    • Google Scholar
  • 43.

    Pettersson, J. An aphid sex attractant. Insect Syst. Evol. 1, 63–73 (1970).

    • Article
    • Google Scholar
  • 44.

    Vet, L. E. M., Lenteren, J. C., van, Heymans, M. & Meelis, E. An airflow olfactometer for measuring olfactory responses of hymenopterous parasitoids and other small insects. Physiol. Entomol. 8, 97–106 (1983).

    • Article
    • Google Scholar
  • 45.

    Martínez, A. S. & Hardie, J. Hygroreception in olfactometer studies. Physiol. Entomol. 34, 211–216 (2009).

    • Article
    • Google Scholar
  • 46.

    Schneider, C. A., Rasband, W. S. & Eliceiri, K. W. NIH Image to ImageJ: 25 years of image analysis. Nat. Methods 9, 671–675 (2012).

  • 47.

    Nussbaum-Krammer, C., Neto, M., Brielmann, R., Pedersen, J. & Morimoto, R. Investigating the spreading and toxicity of prion-like proteins using the metazoan model organism C. elegans. J. Vis. Exp. 95, e52321 (2015).

    • Google Scholar

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