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How to Be a Bee-Botanist Using Pollen Spectra

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Abstract

We evaluate bee pollen taxonomy analytic techniques for honey and pollen harvested by a stingless bee and a honeybee. Pollen counts and concentrations, calibrated with an internal Lycopodium spore standard, and the misapplication of pollen counts to nectar or pollen importance—or honey origin—are emphasized. We sampled a meliponicultural favorite, Tetragonisca angustula, and also Africanized Apis mellifera, from seven Neotropical countries, considering honey or pollen harvested at the peak time of “honeyflow” in areas of natural vegetation. An index of pollen diversity, the number of botanical species divided by the number of honey samples, yielded approximately 16 for T. angustula and 12 for A. mellifera. However, little difference was found between the means of the averages for each region—33 for T. angustula and 34 for A. mellifera. Corbicular pollen loads for Apis were not single pollen species and had varied color when one species dominated. Tetragonisca occasionally used “pollen-only” flowers such as Spondias, but Apis used many (e.g., Mimosa) as major resources which dominated honey but were not from nectar, and in general, used more minor resources than recorded for the stingless bee. Those minor resources, scored quantitatively by pollen analysis, may nonetheless be among primary nectar sources. The nectar species of both honeybees and stingless bees had some consistency over different geographic areas of forest but were most consistent in de-forested patches, where secondary vegetation has abundant pollen-only species and is used heavily.

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References

  • Adekanmbi O, Ogundipe O. 2009. Nectar sources for the honey bee (Apis mellifera adansonii) revealed by pollen content. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 37:211–217.

    Google Scholar 

  • Barth M. 1970a. Análise microscópica de algunas amostras de miel; 1, pólen dominante. Anais Academia Brasileira de Ciencia 42:351–366.

    Google Scholar 

  • Barth M. 1970b. Análise microscópica de algunas amostras de miel; 2, pólen acessório. Anais Academia Brasileira de Ciencia 42:571–590.

    Google Scholar 

  • Biesmeijer JC, van Marwijk B, van Deursen K, Punt W, Sommeijer MJ. 1992. Pollen sources for Apis mellifera L (Hym, Apidae) in Surinam, based on pollen grain volume estimates. Apidologie 23:245–256.

    Article  Google Scholar 

  • Bryant VM Jr, Jones GD. 2001. The R-values of honey: pollen coefficients. Palynology 25:11–28.

    Google Scholar 

  • Camargo JMF, Pedro SM. 2007. Meliponini Lepeletier 1836. pp. 272–578. In: Moure JS, Urban D, Melo GAR, eds. Catalogue of bees (Hymenoptera, Apoidea) in the neotropical region. Sociedade Brasileira de Entomologia; Curitiba, Brazil. 1958 pp.

    Google Scholar 

  • Carneiro LT, Martins CF. 2012. Africanized honey bees pollinate and preempt the pollen of Spondias mombin (Anacardiaceae) flowers. Apidologie 43:474–486.

    Google Scholar 

  • Corlett RT. 2011. Honeybees in natural ecosystems. pp. 215–225. In: Hepburn HR, Radloff SE, eds. Honeybees of Asia. Springer Verlag; Berlin, Germany. 612 pp.

    Google Scholar 

  • Dos Santos APM, Romero R, de Oliveira PEAM. 2010. Biologia reprodutiva de Miconia angelana (Melastomataceae), endémica da Serra da Canastra, Minas Gerais. Revista Brasileira de Botanica 33:333–341.

    Article  Google Scholar 

  • Francoy T, Wittmann D, Drauschke M, Müller S, Steinhage V, Becerra-Laure MAF, De Jong D, Gonçalves LS. 2008. Identification of Africanized honey bees through wing morpholometrics: two fast and efficient procedures. Apidologie 39:488–494.

    Article  Google Scholar 

  • Henderson A. 1986. A review of pollination studies in the Palmae. Botanical Review 52:221–259.

    Article  Google Scholar 

  • Iwama S, Melhem TS. 1979. The pollen spectrum of the honey of Tetragonisca angustula angustula Latreille (Apidae; Meliponinae) Apidologie 10:275–295.

    Article  Google Scholar 

  • Kiew R. 1997. Analysis of pollen from combs of Apis dorsata in peninsular Malaysia. pp. 174–186. In: Mardan M, Sipat A, Yousoff KM, Kew HMSR, Abdullah MM, eds. Proceedings of the international conference on tropical bees and the environment. Beenet Asia; Penang, Malaysia.

    Google Scholar 

  • Kerkvliet JD, Beerlink JG. 1991. Pollen analysis of honey from the coastal plain of Surinam. Journal of Apicultural Research 20:249–253.

    Google Scholar 

  • Latham P, Mbuta K. 2011. Some honeybee plants of Bas-Congo Province, Democratic Republic of Congo. 2nd edition. 248 pp. (published by authors).

    Google Scholar 

  • Louveaux J. 1968. L’analyse pollinque des miels. pp. 325–362. In: Chauvin R, ed. Traité de biologie de l’abeille, vol. 3. Masson; Paris, France. 152 pp.

    Google Scholar 

  • Maurizio A. 1975. Microscopy of honey. pp. 240–257. In: Crane E, ed. Honey: A comprehensive survey. Heinemann; London, UK. 608 pp.

    Google Scholar 

  • O’Rourke MK, Buchmann SL. 1991. Standardized analytical techniques for bee-collected pollen. Environmental Entomology 20:507–513.

    Google Scholar 

  • Roubik DW. 1988. An overview of Africanized honey bee populations: reproduction, diet and competition. pp. 45–54. In: Needham G, Page R, Delfinado-Baker M, eds. Proceedings of the international conference on Africanized honey bees and bee mites. E. Horwood Ltd.; Chichester, UK. 572 pp.

    Google Scholar 

  • Roubik DW. 1989. Ecology and natural history of tropical bees. Cambridge University Press; New York, USA. 514 pp.

    Google Scholar 

  • Roubik DW. 1992. Loose niches in tropical communities: why are there so many trees and so few bees? pp. 327–354. In: Hunter MD, Ohgushi T, Price PW, eds. Resource distribution and animal-plant interactions. Academic Press, Ltd.; London, UK. 505 pp.

    Google Scholar 

  • Roubik DW. 1993. Direct costs of forest reproduction, bee-cycling and the efficiency of pollination modes. Journal of Bioscience 18:537–552.

    Article  Google Scholar 

  • Roubik DW. 1996. African honey bees as exotic pollinators in French Guiana. pp. 173–182. In: Matheson A, Buchmann SL, O’Toole C, Westrich P, Williams IH, eds. The conservation of bees. Academic Press, Ltd.; London, UK. 254 pp.

    Google Scholar 

  • Roubik DW. 2005. Honeybees in Borneo. pp. 89–103. In Roubik DW, Sakai S, Hamid Karim A, eds. Pollination ecology and the rain forest: Sarawak studies. Springer-Verlag; New York, USA. 307 pp.

    Google Scholar 

  • Roubik DW. 2006. Stingless bee nesting biology. Apidologie 37:124–143.

    Article  Google Scholar 

  • Roubik DW. 2009. Ecological impact on native bees by the invasive Africanized honey bee. Acta Biologica Colombiana 14:115–124.

    Google Scholar 

  • Roubik DW, Villanueva GR. 2009. Invasive Africanized honey bee impact on native solitary bees: a pollen resource and trap nest analysis. Biological Journal of the Linnean Society 98:152–160.

    Article  Google Scholar 

  • Roubik DW, Schmalzel RJ, Moreno E. 1984. Estudio apibotanico de Panama: Cosecha y fuentes de polen y nectar usados por Apis mellifera y sus patrones estacionales y anuales. Technical Bulletin 24. Organización Internacional Regional de Sanidad Agropecuaria (OIRSA); San Salvador, El Salvador. 74 pp.

    Google Scholar 

  • Roubik DW, Moreno JE. 1991. Pollen and Spores of Barro Colorado Island. Missouri Botanical Garden Monographs in Systematic Botany, No. 36. 269 pp.

    Google Scholar 

  • Roubik DW, Moreno JE. 2009. Trigona corvina: an ecological study based on unusual nest structure and pollen analysis. Psyche, vol. 2009. Available at: http://www.hindawi.com/journals/psyche/Article ID 268756, DOI:10.1155/2009/268756.

  • Roubik DW, Sakai S, Gattesco F. 2003. Canopy flowers and certainty: loose niches revisited. pp. 360–368. In: Basset Y, Kitching R, Mijller S, Novotny V, eds. Arthropods of tropical forests: spatio-temporal dynamics and resource use in the canopy. Cambridge University Press; Cambridge, UK. 474 pp.

    Google Scholar 

  • Roubik DW, Hanson PE. 2004. Orchid bees of tropical America: biology and field guide. Spanish/English edition. InBIO Press (Editorial INBio); Heredia, Costa Rica. 370 pp.

    Google Scholar 

  • Roulston T, Cane JH, Buchmann SL. 2000. What governs protein content of pollen: pollinator preferences, pollen–pistil interactions, or phylogeny? Ecological Monographs 70:617–643.

    Google Scholar 

  • Sornsathapornkul P, Owens JN. 1998. Pollination biology in a tropical Acacia Hybrid (A. mangium Willd. x A. auriculiformis A. Cunn. ex Benth.) Annals of Botany 81:631–645.

    Article  Google Scholar 

  • Stockmarr J. 1971. Tablets with spores used in absolute pollen analysis. Pollen et Spores 13:615–621.

    Google Scholar 

  • Stone G, Raine NE, Prescott M, Willmer PG. 2003. Pollination ecology of acacias (Fabaceae, Mimosoideae). Australian Systematic Botany 16:103–118.

    Article  Google Scholar 

  • Villanueva-Gutiérrez R, Roubik DW. 2004. Why are African honey bees and not European bees invasive? Pollen diet determination in community experiments. Apidologie 35:550–560.

    Google Scholar 

  • Villanueva-Gutiérrez R, Moguel-Ordóñez YB, Echazarreta-González C, Arana LG. 2009. Monofloral honeys in the Yucatán península, Mexico. Grana 48:214–223.

    Article  Google Scholar 

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Acknowledgments

We thank Dr. R. Villanueva for comments and for providing Mexican honey samples. Dr. R. Harrison helped collect Bolivian samples, for which we also thank E. Stierlin. B. Gaucher and G. El Alaoui sampled French Guianan bees for both pollen and honey.

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Correspondence to David W. Roubik .

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Roubik, D.W., Patiño, J.E.M. (2013). How to Be a Bee-Botanist Using Pollen Spectra. In: Vit, P., Pedro, S., Roubik, D. (eds) Pot-Honey. Springer, New York, NY. https://doi.org/10.1007/978-1-4614-4960-7_21

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