Harvesting pollen with vibrations: towards an integrative understanding of the proximate and ultimate reasons for buzz pollination
2024 (English)In: Annals of Botany, ISSN 0305-7364, E-ISSN 1095-8290, Vol. 133, p. 379-398Article in journal (Refereed) Published
Abstract [en]
Buzz pollination, a type of interaction in which bees use vibrations to extract pollen from certain kinds of flowers, captures a close relationship between thousands of bee and plant species. In the last 120 years, studies of buzz pollination have contributed to our understanding of the natural history of buzz pollination, and basic properties of the vibrations produced by bees and applied to flowers in model systems. Yet, much remains to be done to establish its adaptive significance and the ecological and evolutionary dynamics of buzz pollination across diverse plant and bee systems. Here, we review for bees and plants the proximate (mechanism and ontogeny) and ultimate (adaptive significance and evolution) explanations for buzz pollination, focusing especially on integrating across these levels to synthesise and identify prominent gaps in our knowledge. Throughout, we highlight new technical and modelling approaches and the importance of considering morphology, biomechanics, and behaviour in shaping our understanding of the adaptive significance of buzz pollination. We end by discussing the ecological context of buzz pollination and how a multilevel perspective can contribute to explain the proximate and evolutionary reasons for this ancient bee-plant interaction.
Place, publisher, year, edition, pages
Oxford University Press, 2024. Vol. 133, p. 379-398
Keywords [en]
Adaptation, bees, behaviour, biomechanics, buzz pollination, ecological interactions, fitness, floral evolution, learning, ontogeny, pollen, poricidal flower
National Category
Evolutionary Biology Ecology
Research subject
Biology with specialization in Ecological Botany; Biology
Identifiers
URN: urn:nbn:se:uu:diva-520851DOI: 10.1093/aob/mcad189ISI: 001135407100001PubMedID: 38071461Scopus ID: 2-s2.0-85186591710OAI: oai:DiVA.org:uu-520851DiVA, id: diva2:1828169
2024-01-162024-01-162024-12-10Bibliographically approved