How the social parasitic bumblebee Bombus bohemicus sneaks into power of reproduction

Behavioral Ecology and Sociobiology - Tập 66 - Trang 475-486 - 2011
Kirsten Kreuter1, Elfi Bunk1, Anna Lückemeyer1, Robert Twele2, Wittko Francke2, Manfred Ayasse1,3
1Institute of Experimental Ecology, Department of Chemical Ecology, University of Ulm, Ulm, Germany
2Institute of Organic Chemistry, University of Hamburg, Hamburg, Germany
3Department of Chemical Ecology, University of Ulm, Ulm, Germany

Tóm tắt

Social parasitism is widespread in many groups of social living hymenopteran species and has also evolved in the genus Bombus. Cuckoo bumblebees (subgenus Psithyrus) are obligate brood parasites in nests of other bumblebee species. After nest usurpation and the killing of the host queen, the parasite female has to control worker reproduction in order to accomplish and maintain reproductive dominance and to ensure her reproductive success. The aim of our study was to examine whether the generalist parasitic bumblebee Bombus bohemicus monopolizes and prevents worker reproduction by physical or chemical means and to identify possible odor compounds involved therein. We performed bioassays with callow workers of the host Bombus terrestris and have shown that B. bohemicus females are able to suppress host worker ovarian development, when these host workers are under the direct influence of the parasite female. Furthermore, by chemical analyses, we have demonstrated that the parasite females adjust to the odor profiles of their host queens in order to maintain the level of fertility signaling inside the host colony although the host queen is absent. We also found that host workers change their odor profile after nest usurpation by the parasite female and consequently, we suggest that the host and parasite are caught up in a chemical arms race.

Tài liệu tham khảo

Akino T, Knapp JJ, Thomas JA, Elmes GW (1999) Chemical mimicry and host specificity in the butterfly Maculinea rebeli, a social parasite of Myrmica ant colonies. Proc R Soc Lond B 266:1419–1426 Ayasse M, Marlovits T, Tengö J, Taghizadeh T, Francke W (1995) Are there pheromonal dominance signals in the bumblebee Bombus hypnorum L (Hymenoptera, Apidae). Apidologie 26:163–180 Benton T (2006) Bumblebees. Harper Collins, London Breed MD, Diaz PH, Lucero KD (2004) Olfactory information processing in honeybee, Apis mellifera, nestmate recognition. Anim Behav 68:921–928 Bunk E, Sramkova A, Ayasse M (2010) The role of trail pheromones in host nest recognition of the social parasitic bumblebees Bombus bohemicus and Bombus rupestris (Hymenoptera: Apidae). Chemoecology 20:189–198 Buschinger A (1986) Evolution of social parasitism in ants. Trends Ecol Evol 1:155–160 Buser HR, Arn H, Guerin P, Rauscher S (1983) Determination of double bond position in monosaturates acetates by mass spectrometry of dimethyl disulfide adducts. Anal Chem 55:818–822 Clarke KR, Gorley RN (2006) Primer v6: user manual/tutorial. Primer-E Ltd., Plymouth D’Ettore P, Mondy N, Lenoir A, Errard C (2002) Blending in with the crowd: social parasites integrate into their host colonies using a flexible chemical signature. Proc R Soc Lond B 269:1911–1918 Dani FR, Jones GR, Corsi S, Beard R, Pradella D, Turillazzi S (2005) Nestmate recognition cues in the honey bee: differential importance of cuticular alkanes and alkenes. Chem Senses 30:477–489 Davies NB, Bourke AFG, Brooke ML (1989) Cuckoos and parasitic ants: interspecific brood parasitism as an evolutionary arms race. Trends Ecol Evol 4:274–278 Dronnet S, Simon X, Verhaeghe JC, Rasmont P, Errard C (2005) Bumblebee inquilinism in Bombus (Fernaldaepsithyrus) sylvestris (Hymenoptera: Apidae): behavioural and chemical analyses of host–parasite interactions. Apidologie 36:59–70 Duchateau MJ, Velthuis HHW (1989) Ovarian development and egg laying in workers of Bombus terrestris. Entomol Exp Appl 51:199–213 Fisher RM (1983) Inability of the social parasite Psithyrus ashtoni to suppress ovarian development in workers of Bombus affinis (Hymenoptera: Apidae). J Kans Entomol Soc 56:69–73 Free JB (1987) Pheromones of social bees. Cornell University Press, New York Gamboa GJ, Klahn JE, Parman AO, Ryan RE (1987) Discrimination between nestmate and non-nestmate kin by social wasps (Polistes fuscatus, Hymenoptera: Vespidae). Behav Ecol Sociobiol 21:125–128 Goulson D (2003) Bumblebees: behaviour, ecology and conservation. Oxford University Press, Oxford Heinze J, Schrempf A (2008) Aging and reproduction in social insects—a mini-review. Gerontology 54:160–167 Heinze J, Stengl B, Sledge MF (2002) Worker rank, reproductive status and cuticular hydrocarbon signature in the ant, Pachycondyla cf. inverse. Behav Ecol Sociobiol 52:59–65 Hölldobler B, Wilson EO (1990) The ants. Springer Verlag, Berlin Hoover SER, Oldroyd BP, Wossler TC, Winston ML (2003) The effect of queen pheromones on worker honey bee ovary development. Naturwissenschaften 90:477–480 Howard RW, Blomquist GJ (2005) Ecological, behavioral and biochemical aspects of insect hydrocarbons. Annu Rev Entomol 50:371–391 Izzo A, Wells M, Huang Z, Tibbetts E (2010) Cuticular hydrocarbons correlate with fertility, not dominance, in a paper wasp, Polistes dominulus. Behav Ecol Sociobiol 64:857–864 Kearns CA, Thomson JD (2001) The natural history of bumblebees: a sourcebook for investigations. University Press of Colorado, Colorado Keller L, Nonacs P (1993) The role of queen pheromones in social insects: queen control or queen signal? Anim Behav 45:787–794 Küpper G, Schwammberger KH (1995) Social parasitism in bumble bees (Hymenoptera: Apidae): observations of Psithyrus sylvestris in Bombus pratorum nests. Apidologie 26:245–254 Lambardi D, Dani FR, Turillazzi S, Boomsma JJ (2007) Chemical mimicry in an incipient leaf-cutting ant social parasite. Behav Ecol Sociobiol 61:843–851 Le Conte Y, Hefetz A (2008) Primer pheromones in social hymenoptera. Ann Rev Entomol 53:523–542 Lenoir A, D’Ettorre P, Errard C, Hefetz A (2001) Chemical ecology and social parasitism in ants. Annu Rev Entomol 46:573–599 Liebig J, Peeters C, Oldham NJ, Markstädter C, Hölldobler B (2000) Are variations in cuticular hydrocarbons of queens and workers a reliable signal of fertility in the ant Harpegnathos saltator? Proc Natl Acad Sci USA 97:4124–4131 Lorenzi MC, Cometto I, Marchisio G (1999) Species and colony components in the recognition dodr of young social wasps: their expression and learning (Polistes biglumis and P. atrimandibularis; Hymenoptera: Vespidae). J Insect Behav 12:147–158 Lückemeyer A (2009) The role of chemical communication in the reproductive biology of bumblebees and cuckoo bumblebees. Dissertation, University of Ulm Martin SJ, Takahashi J, Ono M, Drijfhout FP (2008) Is the social parasite Vespa dybowskii using chemical transparency to get her eggs accepted? J Insect Physiol 54:700–707 Martin SJ, Carruthers JM, Williams PH, Drijfhout FP (2010) Host specific social parasites (Psithyrus) indicate chemical recognition system in bumblebees. J Chem Ecol 36:855–863 Michener CD (1974) The social behavior of the bees. Harvard University Press, Cambridge Nash DR, Boomsma JJ (2008) Communication between hosts and social parasites. In: Hughes DP (ed) Sociobiology of communication: an interdisciplinary perspective. Oxford University Press, USA, pp 55–79 Pouvreau A (1996) Le marque de l’entrée du nid de bourdons. Entomol Exp Appl 80:355–364 Ratnieks FLW, Helanterä H (2009) The evolution of extreme altruism and inequality in insect societies. Phil Trans R Soc B 364:3169–3179 Röseler PF (1985) A technique for year-round rearing of Bombus terrestris (Apidae, Bombini) colonies in captivity. Apidologie 16:165–170 Röseler PF, Van Honk C (1990) Castes and reproduction in bumblebees. In: Engels W (ed) Social insects: an evolutionary approach to castes and reproduction. Springer Verlag, Berlin, pp 147–166 Röseler PF, Röseler I, van Honk CGJ (1981) Evidence for inhibition of corpora allata activity in workers of Bombus terrestris by a pheromone from the queen’s mandibular glands. Experientia 37:348–351 Sladen FWL (1912) The humblebee, its life history and how to domesticate it. Macmillan, London Sledge MF, Boscaro F, Turillazzi S (2001) Cuticular hydrocarbons and reproductive status in the social wasp Polistes dominulus. Behav Ecol Sociobiol 49:401–409 Slessor KN, Winston ML, Le Conte Y (2005) Pheromone communication in the honeybee (Apis mellifera L.). J Chem Ecol 31:2731–2745 Smith BH, Breed MD (1995) The chemical basis for nestmate recognition and mate discrimination in social insects. In: Cardé RT, Bell WJ (eds) Chemical Ecology of Insects 2. Chapman & Hall, New York, pp 287–317 Sramkova A, Ayasse M (2009) Chemical ecology involved in invasion success of the cuckoo bumblebee Psithyrus vestalis and in survival of workers of its host Bombus terrestris. Chemoecology 19:55–62 Sramkova A, Schulz C, Twele R, Francke W, Ayasse M (2008) Fertility signals in the bumblebee Bombus terrestris (Hymenoptera: Apidae). Naturwissenschaften 95:515–522 Strauss K, Scharpenberg H, Crewe RM, Glahn F, Foth H, Moritz RFA (2008) The role of the queen mandibular gland pheromone in honeybees (Apis mellifera): hones signal or suppressive agent? Behav Ecol Sociobiol 62:1523–1531 Strohm E, Kroiss J, Herzner G, Laurien-Kehnen C, Boland W, Schreier P, Schmitt T (2008) A cuckoo in wolves’ clothing? Chemical mimicry in a specialized cuckoo wasp of the European beewolf (Hymenoptera, Chrysididae and Crabronidae). Front Zool 5:2 Van Doorn A (1988) Reproductive dominance in bumblebees: an etho-physiological study. Dissertation, Universtiy of Utrecht Van Honk CGJ, Velthuis HHW, Röseler PF, Malotaux ME (1980) The mandibular glands of Bombus terrestris queens as a source of queen pheromones. Entomol Exp Appl 28:191–198 Van Honk CGJ, Röseler PF, Velthuis HHW, Malotaux M (1981) The conquest of a Bombus terrestris colony by a Psithyrus vestalis female. Apidologie 12:57–67 Vergara CH, Schröder S, Almanza MT, Wittmann D (2003) Suppression of ovarian development of Bombus terrestris workers by B. terrestris queens, Psithyrus vestalis and Psithyrus bohemicus females. Apidologie 34:563–568 Williams PH (1998) An annotated checklist of bumble bees with an analysis of patterns of description (Hymenoptera: Apidae, Bombini). Bull nat Hist Mus Lond (Ent) 67:79–152 Wyatt TD (2003) Pheromones and animal behaviour: communication by smell and taste. Cambridge University Press, Cambridge Zimma BO, Ayasse M, Tengö J, Ibarra F, Schulz C, Francke W (2003) Do social parasitic bumblebees use chemical weapons? J Comp Physiol 189:769–775 Zimma BO, Ayasse M, Tengö J, Ibarra F, Francke W (2004) The role of semiochemicals in the reproductive biology of parasitic bumblebees. Mitt dtsch Ges allg angew Ent 14:195–198