Related Experiment Video
Updated: Apr 22, 2026

Author Spotlight: Bridging the Gap Between Field Observations and Lab Manipulations in Larval Ecology Research
Published on: January 5, 2024
Macroevolutionary consequences of profound climate change on niche evolution in marine molluscs over the past three
E E Saupe1, J R Hendricks2, R W Portell3
1Biodiversity Institute and Department of Geology, University of Kansas, 1475 Jayhawk Boulevard, Room 120 Lindley Hall, Lawrence, KS 66045, USA Department of Geology and Geophysics, Yale University, 210 Whitney Avenue, New Haven, CT 06511, USA eesaupe@gmail.com.
Abstract:
In order to predict the fate of biodiversity in a rapidly changing world, we must first understand how species adapt to new environmental conditions. The long-term evolutionary dynamics of species' physiological tolerances to differing climatic regimes remain obscure. Here, we unite palaeontological and neontological data to analyse whether species' environmental tolerances remain stable across 3 Myr of profound climatic changes using 10 phylogenetically, ecologically and developmentally diverse mollusc species from the Atlantic and Gulf Coastal Plains, USA. We additionally investigate whether these species' upper and lower thermal tolerances are constrained across this interval. We find that these species' environmental preferences are stable across the duration of their lifetimes, even when faced with significant environmental perturbations. The results suggest that species will respond to current and future warming either by altering distributions to track suitable habitat or, if the pace of change is too rapid, by going extinct. Our findings also support methods that project species' present-day environmental requirements to future climatic landscapes to assess conservation risks.
Related Concept Videos
Marine Microbial Ecology
Global Climate Change
Microbes and Climate Change
Speciation Rates
What is Evolutionary History?
Evolution of New Traits in Microbes

