4.8 Article

Bee phenology is predicted by climatic variation and functional traits

期刊

ECOLOGY LETTERS
卷 23, 期 11, 页码 1589-1598

出版社

WILEY
DOI: 10.1111/ele.13583

关键词

Climate change; emergence; environmental cues; GAM (generalised additive models); Hymenoptera; mismatch; peak; phenophases; senescence

类别

资金

  1. NSF [ABI-1759965, EF-1802605, 1745048, DEB-0922080, DEB-1354104]
  2. USDA Forest Service [18-CS-11046000-041]
  3. NC State University
  4. Division Of Graduate Education
  5. Direct For Education and Human Resources [1745048] Funding Source: National Science Foundation

向作者/读者索取更多资源

Climate change is shifting the environmental cues that determine the phenology of interacting species. Plant-pollinator systems may be susceptible to temporal mismatch if bees and flowering plants differ in their phenological responses to warming temperatures. While the cues that trigger flowering are well-understood, little is known about what determines bee phenology. Using generalised additive models, we analyzed time-series data representing 67 bee species collected over 9 years in the Colorado Rocky Mountains to perform the first community-wide quantification of the drivers of bee phenology. Bee emergence was sensitive to climatic variation, advancing with earlier snowmelt timing, whereas later phenophases were best explained by functional traits including overwintering stage and nest location. Comparison of these findings to a long-term flower study showed that bee phenology is less sensitive than flower phenology to climatic variation, indicating potential for reduced synchrony of flowers and pollinators under climate change.

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