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May 8, 2026Canadian Journal of Zoology0 citations

Effects of Food Supplementation on Activity and Reproduction in the Eastern Chipmunk (Tamias striatus)

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EPEric PhendlerDGDany GarantDRDenis Réale

Key Points

  • This study aims to understand the impact of food supplementation on the activity and reproduction of eastern chipmunks.
  • Monitored eastern chipmunks in a deciduous forest from 2013 to 2024.
  • Conducted a supplemental-feeding experiment from 2022 to 2024.
  • Assessed effects on body mass, activity, and reproductive phenology.
  • Unsupplemented populations showed a significant decline in body mass (-X kg) from 2013 to 2024.
  • Supplemented populations maintained higher spring body mass compared to unsupplemented cohorts.
  • Cohorts born post-supplementation had lower above-ground activity and weaning success due to missed breeding opportunities.

Abstract

A key requirement for adaptive phenotypic plasticity is that environmental cues reliably predict future conditions. However, anthropogenic change and environmental stochasticity can disrupt these cues, leading to mismatches between phenotype and environment. We monitored a population of eastern chipmunks (Tamias striatus Linnaeus, 1758) in a deciduous forest in southern Québec, Canada, from 2013 to 2024, and conducted a supplemental-feeding experiment from 2022 to 2024 to examine how food availability influenced spring body mass, above-ground activity, and reproductive phenology, and whether cohort-level differences in activity affected reproductive success. Across the long-term study, unsupplemented populations showed a significant decline in spring body mass from 2013 to 2024, whereas supplemented populations maintained higher spring body mass. On the supplemented site, we observed cohort-level variation: cohorts born after the food supplementation began exhibited reduced above-ground activity and lower weaning success, likely due to missed breeding opportunities, which predominantly occur above-ground. These findings indicate that cues governing seasonal activity could be learnt early in life and act independently among generations within the same population. Our results highlight how early-life environmental cues can have lasting effects on physiology and behaviour under changing environmental conditions.

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Cite This Study

Phendler et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ec6bfa21ec5bbf0700ehttps://doi.org/10.1139/cjz-2025-0158
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