Davis, K. E. C., Thomassen, E. S., Wagner, H. H., Kormann, U. G., Hadley, A. S., Betts, M. G., & Torres-Vanegas, F. (2026). Incorporating pollinator movement into connectivity models predicts pollen-mediated gene flow and highlights the importance of regenerating forests in tropical landscapes. Landscape Ecology, 41(3), 1. https://doi.org/10.1007/s10980-026-02309-y
Chicago Style (17th ed.) CitationDavis, Kathryn E. C., Emil Sloth Thomassen, Helene H. Wagner, Urs G. Kormann, Adam S. Hadley, Matthew G. Betts, and Felipe Torres-Vanegas. "Incorporating Pollinator Movement into Connectivity Models Predicts Pollen-mediated Gene Flow and Highlights the Importance of Regenerating Forests in Tropical Landscapes." Landscape Ecology 41, no. 3 (2026): 1. https://doi.org/10.1007/s10980-026-02309-y.
MLA (9th ed.) CitationDavis, Kathryn E. C., et al. "Incorporating Pollinator Movement into Connectivity Models Predicts Pollen-mediated Gene Flow and Highlights the Importance of Regenerating Forests in Tropical Landscapes." Landscape Ecology, vol. 41, no. 3, 2026, p. 1, https://doi.org/10.1007/s10980-026-02309-y.