Related Experiment Video
Updated: Feb 13, 2026

Evaluating the Effect of Roadside Parking on a Dual-Direction Urban Street
Published on: January 20, 2023
Urbanization disrupts latitude-size rule in 17-year cicadas
DeAnna E Beasley1,2, Clint A Penick2,3,4, Nana S Boateng2
1Department of Biology, Geology, and Environmental Science University of Tennessee at Chattanooga Chattanooga TN USA.
Abstract:
Many ectotherms show a decrease in body size with increasing latitude due to changes in climate, a pattern termed converse Bergmann's rule. Urban conditions-particularly warmer temperatures and fragmented landscapes-may impose stresses on development that could disrupt these body size patterns. To test the impact of urbanization on development and latitudinal trends in body size, we launched a citizen science project to collect periodical cicadas (Magicicada septendecim) from across their latitudinal range during the 2013 emergence of Brood II. Periodical cicadas are long-lived insects whose distribution spans a broad latitudinal range covering both urban and rural habitats. We used a geometric morphometric approach to assess body size and developmental stress based on fluctuating asymmetry in wing shape. Body size of rural cicadas followed converse Bergmann's rule, but this pattern was disrupted in urban habitats. In the north, urban cicadas were larger than their rural counterparts, while southern populations showed little variation in body size between habitats. We detected no evidence of differences in developmental stress due to urbanization. To our knowledge, this is the first evidence that urbanization disrupts biogeographical trends in body size, and this pattern highlights how the effects of urbanization may differ over a species' range.
Related Concept Videos
Latitudes and Departures
Exceptions to the Octet Rule
Lewis Symbols and the Octet Rule
The Aufbau Principle and Hund's Rule
Midpoint Rule
Trapezoidal Rule

