2024/08/31 by Rachel Pizante, John Acorn, I. Pilar Jiménez +1 · 1 voice
Agricultural and Biological Sciences · Environmental Science · #Forest Insect Ecology and Management #Horticultural and Viticultural Research #Insect-Plant Interactions and Control
paper · doi:10.1016/j.agee.2024.109271
openalex publication_date 2024/08/31 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22
Hoverflies (Diptera: Syrphidae) provide dual ecosystem services, as the adults act as pollinators and the larvae can be predators of crop pests. Because bloom time is limited in mass-flowering crops, resources within crops for hoverfly adults can also be limited and change temporally. Therefore, hoverflies need to move between crops and their borders. It may be that some field border vegetation types support the provision of hoverflies to crops better than other vegetation types. We sought to determine how field border type (herbaceous vs. treed), canola bloom, and border vegetation structure and composition (border width, canopy cover, grass height, grass cover, plant cover, flower availability, and density of trees, shrubs, snags, stumps, and downed woody debris) affect hoverfly movement into and out of crop fields from field borders. We placed bi-directional Malaise traps in herbaceous and treed field borders at 10 fields seeded with canola, and sampled continuously from May 17 to August 20, 2021 in central Alberta, Canada. We found that field border type affected hoverfly movement such that, across the whole summer, net-export of hoverflies into crops was over 33-times higher from treed field borders (an estimated 84,699 hoverflies per km per week) than from herbaceous field borders (an estimated 2515 hoverflies per km per week). We did not find any single component of the vegetation within treed field borders that explained the difference in movement. We found more hoverfly activity in herbaceous field borders than in treed field borders during and after canola bloom, but that overall activity was equal between field border types prior to canola bloom. Treed borders had greater Hill-Shannon and Hill-Simpson diversity and evenness than herbaceous borders. Throughout the growing season, the community became dominated by Toxomerus marginatus , which drove all temporal trends. We conclude that treed field borders act as net exporters of hoverflies to canola fields and are therefore important features for optimizing the magnitude of the ecosystem services provided by hoverflies in agricultural systems. Pictorial representation of the study design and major finding of the study. At each site, two bi-directional malaise traps were set-up along the edge of the crop and each field border type (herbaceous and treed). The number of hoverflies and length of the overhead arrow are roughly proportional to the rate of hoverfly movement between the crop and the borders found in the study. The direction of hoverfly movement is demonstrated by both the direction the hoverflies are facing and the direction the arrow is pointing. Components within the image are not to scale. • Treed borders net-export 33-times more hoverflies km −1 week −1 than herbaceous ones. • Mass-flowering crop bloom did not affect the export of hoverflies to crops. • Treed field borders support greater hoverfly diversity than herbaceous borders. • Toxomerus marginatus was highly abundant, and may provide dual ecosystem services.