Global patterns in plant-pollinator specialization. Journal Article uri icon

Overview

abstract

  • Pollination is a key ecological process sustaining biodiversity and food security, yet global patterns of plant-pollinator specialization remain unresolved. Using a global dataset of quantitative plant-pollinator networks (>3,400 networks, >110,000 interactions), we show that specialization is latitudinally structured, but not as a single directional pattern. We find no consistent monotonic increase or decrease in specialization towards the Equator. Instead, network-level and pollinator specialization peak at low northern latitudes near the tropical-subtropical boundary, whereas plant specialization is hemispherically asymmetric. Climate is most often the best-supported predictor of specialization compared with latitude, biodiversity and environmental productivity. Network-level specialization declines with increasing mean annual temperature, with strong group-specific differences. Precipitation exerts nonlinear effects: plant specialization peaks at intermediate precipitation but is lower at the wettest sites, whereas pollinator specialization is lower at intermediate precipitation, although often in interaction with temperature. Pollinator groups diverge strongly, especially in contrasting precipitation-related patterns between birds and insects. These findings show that global plant-pollinator specialization is structured by latitude and climate in complex and taxon-specific ways, with implications for uneven responses of pollination networks to future climatic change.

publication date

  • September 30, 2026

Date in CU Experts

  • October 1, 2026 9:02 AM

Full Author List

  • Sakhalkar SP; Blüthgen N; Burkle LA; CaraDonna P; Dalsgaard B; Dormann CF; Kaiser-Bunbury CN; Knight TM; Ollerton J; Resasco J

author count

  • 141

Other Profiles

Electronic International Standard Serial Number (EISSN)

  • 2397-334X