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Body Size Variation in a Social Sweat Bee, (, ), Across Urban Environments

Overview
Journal Insects
Specialty Biology
Date 2021 Dec 23
PMID 34940174
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Abstract

High morphological variation is often associated with species longevity, and it is hypothesized that urban-dwelling species may require more plasticity in functional traits such as body size in order to maximize fitness in heterogeneous environments. There has been published research regarding the functional trait diversity of urban bee pollinators. However, no two cities are identical, so the implementation of multi-city studies is vital. Therefore, we compared body size variation in female sweat bees from May-October 2016 from three distinct Midwestern United States cities: Chicago, Detroit, and Saint Louis. Additionally, to elucidate potentially influential environmental factors, we assessed the relationship between temperature and measured body size. We collected bees in community gardens and urban farms and measured their head width and intertegular distance as a proxy for overall body size. We utilized an ANCOVA to determine whether body size variation differed significantly across the three surveyed cities. Results indicated that females in Chicago, Detroit, and Saint Louis had significantly different body size ranges. These findings highlight the importance of intraspecific body size variation and support our prediction that bees from different urban environments will have distinct ranges in body size due to local ecological factors affecting their populations. Additionally, we found a significant influence of temperature, though this is probably not the only important ecological characteristic impacting bee body size. Therefore, we also provided a list of predictions for the future study of specific variables that are likely to impact functional trait diversity in urban bees.

References
1.
Austin M, Dunlap A . Intraspecific Variation in Worker Body Size Makes North American Bumble Bees ( spp.) Less Susceptible to Decline. Am Nat. 2019; 194(3):381-394. DOI: 10.1086/704280. View

2.
Lovell K, Eisenstein E . Dark avoidance learning and memory disruption by carbon dioxide in cockroaches. Physiol Behav. 1973; 10(5):835-40. DOI: 10.1016/0031-9384(73)90050-4. View

3.
Couvillon M, Dornhaus A . Location, location, location: larvae position inside the nest is correlated with adult body size in worker bumble-bees (Bombus impatiens). Proc Biol Sci. 2009; 276(1666):2411-8. PMC: 2690463. DOI: 10.1098/rspb.2009.0172. View

4.
Scharf I, Filin I, Ben-Yehoshua D, Ovadia O . Phenotypic plasticity and variation in morphological and life-history traits of antlion adults across a climatic gradient. Zoology (Jena). 2008; 112(2):139-50. DOI: 10.1016/j.zool.2008.05.004. View

5.
Klaiber J, Najar-Rodriguez A, Piskorski R, Dorn S . Plant acclimation to elevated CO₂ affects important plant functional traits, and concomitantly reduces plant colonization rates by an herbivorous insect. Planta. 2012; 237(1):29-42. DOI: 10.1007/s00425-012-1750-7. View