• Climatic conditions and landscape diversity predict plant–beeinteractions and pollen deposition in bee-pollinated plants 

      Sydenham, Markus A. K.; Dupont, Yoko L.; Nielsen, Anders; Olesen, Jens M.; Madsen, Henning Bang; Skrindo, Astrid Brekke; Rasmussen, Claus; Nowell, Megan Sara; Venter, Zander; Hegland, Stein Joar; Helle, Anders Gunnar; Skoog, Daniel Ingvar Jeuderan; Torvanger, Marianne Strand; Hanevik, Kaj-Andreas; Hinderaker, Sven Emil; Paulsen, Thorstein; Eldegard, Katrine; Reitan, Trond; Rusch, Graciela Monica (Peer reviewed; Journal article, 2024)
      Climate change, landscape homogenization, and the decline of beneficial insectsthreaten pollination services to wild plants and crops. Understanding how pollinationpotential (i.e. the capacity of ecosystems to support ...
    • Nitrogen deposition linked to changes in flowering plant and wild bee diversity 

      Torvanger, Marianne Strand (Master thesis, 2022)
      Nitrogen (N) deposition from anthropogenic activities is a major threat to plant biodiversity, but few studies have investigated effects of N deposition on higher trophic levels, such as on flower-visiting insects. N ...
    • The contributions of flower strips to wild bee conservation in agricultural landscapes can be predicted using pollinator habitat suitability models 

      Sydenham, Markus A. K.; Venter, Zander; Eldegard, Katrine; Torvanger, Marianne Strand; Nowell, Megan Sara; Hansen, Silke; Øverland, John Ingar; Dupont, Yoko L.; Rasmussen, Claus; Skrindo, Astrid Brekke; Rusch, Graciela Monica (Peer reviewed; Journal article, 2023)
      1. Sowing flower strips along field edges is a widely adopted method for conserving pollinating insects in agricultural landscapes. To maximize the effect of flower strips given limited resources, we need spatially explicit ...