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PLOS ONE  2013 

The Ontogeny of Bumblebee Flight Trajectories: From Na?ve Explorers to Experienced Foragers

DOI: 10.1371/journal.pone.0078681

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Abstract:

Understanding strategies used by animals to explore their landscape is essential to predict how they exploit patchy resources, and consequently how they are likely to respond to changes in resource distribution. Social bees provide a good model for this and, whilst there are published descriptions of their behaviour on initial learning flights close to the colony, it is still unclear how bees find floral resources over hundreds of metres and how these flights become directed foraging trips. We investigated the spatial ecology of exploration by radar tracking bumblebees, and comparing the flight trajectories of bees with differing experience. The bees left the colony within a day or two of eclosion and flew in complex loops of ever-increasing size around the colony, exhibiting Lévy-flight characteristics constituting an optimal searching strategy. This mathematical pattern can be used to predict how animals exploring individually might exploit a patchy landscape. The bees’ groundspeed, maximum displacement from the nest and total distance travelled on a trip increased significantly with experience. More experienced bees flew direct paths, predominantly flying upwind on their outward trips although forage was available in all directions. The flights differed from those of na?ve honeybees: they occurred at an earlier age, showed more complex looping, and resulted in earlier returns of pollen to the colony. In summary bumblebees learn to find home and food rapidly, though phases of orientation, learning and searching were not easily separable, suggesting some multi-tasking.

References

[1]  Chittka L, Thomson JD, Waser NM (1999) Flower constancy, insect psychology, and plant evolution. Naturwissenschaften 86: 361–377.
[2]  Collett TS, Graham P, Harris RA, Hempel-De-Ibarra N (2006) Navigational memories in ants and bees: Memory retrieval when selecting and following routes. Advan Study Behav 36: 123–172.
[3]  Dyer FC (1996) Spatial Memory and Navigation By Honeybees On the Scale Of the Foraging Range. J Exp Biol 199: 147–154.
[4]  Heinrich B (1979) Bumblebee economics. Cambridge, Mass.: Harvard University Press.
[5]  Menzel R, Gumbert A, Kunze J, Schmida A, Vorobyev M (1997) Pollinators’ strategies in finding flowers. Isr J Plant Sci 45: 141–156.
[6]  Baddeley B, Philippides A, Graham P, de Ibarra NH, Collett T, et al. (2009) What can be learnt from analysing insect orientation flights using probabilistic SLAM? Biol Cybern 101: 169–182.
[7]  Collett TS (1998) Rapid navigational learning in insects with a short lifespan. Connect Sci 10: 255–270.
[8]  de Ibarra NH, Philippides A, Riabinina O, Collett TS (2009) Preferred viewing directions of bumblebees (Bombus terrestris L.) when learning and approaching their nest site. J Exp Biol 212: 3193–3204.
[9]  Philippides A, de Ibarra NH, Riabinina O, Collett TS (2013) Bumblebee calligraphy: the design and control of flight motifs in the learning and return flights of Bombus terrestris. J Exp Biol 216: 1093–1104.
[10]  Chittka L, Gumbert A, Kunze J (1997) Foraging dynamics of bumble bees: correlates of movements within and between plant species. Behav Ecol 8: 239–249.
[11]  Pyke GH (1978) Optimal foraging: movement patterns of bumblebees between inflorescences. Theor Popul Biol 13: 72–98.
[12]  Burns JG, Thomson JD (2006) A test of spatial memory and movement patterns of bumblebees at multiple spatial and temporal scales. Behav Ecol 17: 48–55.
[13]  Cheng K (2000) How honeybees find a place: Lessons from a simple mind. Anim Learn Behav 28: 1–15.
[14]  Lihoreau M, Chittka L, Raine NE (2010) Travel optimization by foraging bumblebees through readjustments of traplines after discovery of new feeding locations. Am Nat 176: 744–757.
[15]  Srinivasan MV (2011) Honeybees as a Model for the Study of Visually Guided Flight, Navigation, and Biologically Inspired Robotics. Physiol Rev 91: 413–460.
[16]  Collett TS, Zeil J (1996) Flights of learning. Current Directs Psychol Sci 5: 149–155.
[17]  Wei CA, Dyer FC (2009) Investing in learning: why do honeybees, Apis mellifera, vary the durations of learning flights? Anim Behav 77: 1165–1177.
[18]  Waser NM (1986) Flower constancy: definition, cause and measurement. Am Nat 127: 593–603.
[19]  Dyer FC, Seeley TD (1989) Orientation and foraging in honeybees. In: Goldsworthy GJ, Wheeler CH, editors. Insect Flight. Florida: CRC Press. pp. 205–230.
[20]  Fourcassie V, Traniello JFA (1994) Food Searching Behavior in the Ant Formica-Schaufussi (Hymenoptera, Formicidae) - Response of Naive Foragers to Protein and Carbohydrate Food. Anim Behav 48: 69–79.
[21]  Hoffmann G (1983) The Random Elements in the Systematic Search Behavior of the Desert Isopod Hemilepistus-Reaumuri. Behav Ecol and Sociobiol 13: 81–92.
[22]  Wehner R, Srinivasan MV (1981) Searching Behavior of Desert Ants, Genus Cataglyphis (Formicidae, Hymenoptera). J Comp Physiol 142: 315–338.
[23]  Reynolds AM, Smith AD, Menzel R, Greggers U, Reynolds DR, et al. (2007) Displaced honey bees perform optimal scale-free search flights. Ecology 88: 1955–1961.
[24]  Reynolds AR, Smith AD, Reynolds DR, Carreck NL, Osborne JL (2007) Honeybees perform optimal scale-free searching flights when attempting to locate a food source. J Exp Biol 210: 3763–3770.
[25]  Reynolds AM (2008) Optimal random Levy-loop searching: New insights into the searching behaviours of central-place foragers. Epl 82.
[26]  Dornhaus A, Chittka L (1999) Evolutionary origins of bee dances. Nature 401: 38.
[27]  Capaldi EA, Smith AD, Osborne JL, Fahrbach SE, Farris SM, et al. (2000) Ontogeny of orientation flight in the honeybee revealed by harmonic radar. Nature 403: 537–540.
[28]  von Frisch K (1967) The dance language and orientation of bees. London: Oxford University Press. 566 p.
[29]  Osborne JL, Clark SJ, Morris RJ, Williams IH, Riley JR, et al. (1999) A landscape scale study of bumble bee foraging range and constancy, using harmonic radar. J Appl Ecol 36: 519–533.
[30]  Riley JR, Smith AD, Reynolds DR, Edwards AS, Osborne JL, et al. (1996) Tracking bees with harmonic radar. Nature 379: 29–30.
[31]  Riley JR, Smith AD (2002) Design considerations for an harmonic radar to investigate the flight of insects at low altitude. Comp Electron Agric 35: 151–169.
[32]  Lehrer M (1993) Why do bees turn back and look? J Comp Physiol A 172: 549–563.
[33]  Clauset A, Shalizi CR, Newman MEJ (2009) Power-Law Distributions in Empirical Data. Siam Rev 51: 661–703.
[34]  Reynolds AR (2012) Distinguishing between Levy walks and strong alternative models. Ecology 93: 1228–1233.
[35]  Peng CK, Mietus J, Hausdorff JM, Havlin S, Stanley HE, et al. (1993) Long-Range Anticorrelations and Non-Gaussian Behavior of the Heartbeat. Phys Rev Lett 70: 1343–1346.
[36]  Buldyrev SV, Goldberger AL, Havlin S, Mantegna RN, Matsa ME, et al. (1995) Long-Range Correlation-Properties of Coding and Noncoding DNA-Sequences - Genbank Analysis. Phys Rev E 51: 5084–5091.
[37]  Viswanathan GM, Afanasyev V, Buldyrev SV, Murphy EJ, Prince PA, et al. (1996) Levy flight search patterns of wandering albatrosses. Nature 381: 413–415.
[38]  Seeley TD (1995) The Wisdom of the Hive: The Social Physiology of Honey Bee Colonies. CambridgeMassachusetts: Harvard University Press. 295 p.
[39]  Collett TS (2008) Insect Navigation: Visual Panoramas and the Sky Compass. Curr Biol 18: R1058–R1061.
[40]  Free JB (1955) The division of labour within bumblebee colonies. Insectes Sociaux 2: 195–212.
[41]  Biesmeijer J, Seeley T (2005) The use of waggle dance information by honey bees throughout their foraging careers. Behav Ecol Sociobiol 59: 133–142.
[42]  Conradt L, Roper TJ, Thomas CD (2000) Dispersal behaviour of individuals in metapopulations of two British butterflies. Oikos 95: 416–424.
[43]  Reynolds AM, Reynolds DR, Smith AD, Svensson GP, Lofstedt C (2007) Appetitive flight patterns of male Agrotis segetum moths over landscape scales. J Theor Biol 245: 141–149.
[44]  Collett TS (1996) Insect navigation en route to the goal: multiple strategies for the use of landmarks. J Exp Biol 199: 227–235.
[45]  Reynolds AM (2006) Cooperative random Levy flight searches and the flight patterns of honeybees. Phys Lett A 354: 384–388.
[46]  Riley JR, Reynolds DR, Smith AD, Edwards AS, Osborne JL, et al. (1999) Compensation for the wind by foraging bumble bees. Nature 400: 126.
[47]  Dornhaus A, Chittka L (2004) Information flow and regulation of foraging activity in bumble bees (Bombus spp.). Apidologie 35: 183–192.
[48]  Reinhard J, Srinivasan MV (2009) The Role of Scents in Honey Bee Foraging and Recruitment; Jarau S, Hrncir M, editors. Boca Raton: Crc Press-Taylor & Francis Group. 165–182 p.
[49]  Dobson HEM (1994) Floral volatiles in insect biology. In: Bernays EA, editor. Insect - Plant Interactions Volume V. Boca Raton, FL: CRC Press. pp. 47–81.
[50]  Seeley TD (1987) The effectiveness of information collection about food sources by honey-bee colonies. Anim Behav 35: 1572–1575.

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