Abundant, distinct, and seasonally dynamic bee community in the canopy‐aerosphere interface above a temperate forest

Author:

Cunningham‐Minnick Michael J.1ORCID,Milam Joan1ORCID,Kane Brian1ORCID,Roberts H. Patrick1ORCID,King David I.2ORCID

Affiliation:

1. Department of Environmental Conservation University of Massachusetts Amherst Massachusetts USA

2. U.S. Forest Service Northern Research Station Amherst Massachusetts USA

Abstract

AbstractOur understanding of how bees (Apoidea) use temperate forests is largely limited to sampling the understory and forest floor. Studies over the last decade have demonstrated that bee communities are vertically stratified within forests, yet the ecology of bee assemblages immediately above the canopy, the canopy‐aerosphere interface, remains unexplored. We sampled and compared bee communities above the canopy of a temperate forest to the understory (1 m), midstory (10 m), and canopy (20 m) on the campus of the University of Massachusetts, in Amherst, Massachusetts, United States from April to August, 2021. Overall, we found that assemblages above the canopy had more bees than in the understory, were distinct in composition from all other strata, and included the greatest proportion of unique species. Bee abundance and species richness were highest in the understory throughout the spring (April and May) and decreased as the season progressed, while bee abundance and species richness at higher strata increased into the summer months. We also found that bees with preferences to nest in moist and rotting wood were largely restricted to canopy and midstory strata. We conclude that bee assemblages occupying the space above the forest canopy are abundant and diverse, and their unique composition suggests that this canopy‐aerosphere interface plays an additional role in the bee community of temperate forests. Alternatively, our findings question how forest bee communities should be defined while highlighting the need for research on fundamental processes governing species stratification in and above the canopy.

Publisher

Wiley

Subject

Nature and Landscape Conservation,Ecology,Ecology, Evolution, Behavior and Systematics

Reference41 articles.

1. Canopy sampling reveals hidden potential value of woodland trees for wild bee assemblages

2. Arbizu P. M.(2017).pairwiseAdonis: Pairwise multilevel comparison using Adonis. R package version 0.0.1.

3. Ascher J. S. &Pickering J.(2020).Discover life bee species guide and world checklist (Hymenoptera: Apoidea: Anthophila).http://www.discoverlife.org/mp/20q?/guide=Apoidea_species

4. Red maple (Acer rubrum L.), an important early spring food resource for honey bees and other insects;Batra S. W. T.;Journal of the Kansas Entomological Society,1985

5. glmmTMB Balances Speed and Flexibility Among Packages for Zero-inflated Generalized Linear Mixed Modeling

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