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March 10, 2026Journal of Wildlife Management0 citationsOpen Access

Population dynamics of Townsend's big‐eared bats: effect of age and drought on survival

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NHNatalie HamiltonTexas Parks and Wildlife DepartmentRRRebekah E. RuzickaColorado State UniversityJLJessica E. LightTexas A&M University

Key Points

  • The study aims to understand how age and drought impact the yearly survival rates of Townsend's big-eared bats.
  • Estimated survival of female bats from 18 maternity colonies over 9 years (2013–2022)
  • Employed a Cormack‐Jolly Seber model for survival estimation based on age and drought severity
  • Compared recapture probabilities between different monitoring methods (hand-netting alone vs. hand-netting plus passive antennas)
  • Juvenile survival rates ranged from 0.20 to 0.44, which were lower than adult survival rates of 0.72 to 0.89
  • Both juvenile and adult survival rates were negatively impacted by drought conditions
  • Detection probability was lower for bats caught only with hand-nets compared to those also detected with antennas

Abstract

Abstract Townsend's big‐eared bat ( Corynorhinus townsendii townsendii ) is a species of conservation concern in California, USA, due to human disturbance at roosts, destruction of roosting structures (e.g., mine closures), and vulnerability to habitat loss from climate change. Extreme weather events such as drought and high temperatures can reduce bat survival; however, little is known about climate‐related survival in this species. We estimated age‐specific yearly survival of female Townsend's big‐eared bats ( n = 1,726) from 18 maternity colonies over 9 years (2013–2022) in Inyo and Mono counties, California. We used a Cormack‐Jolly Seber model to estimate yearly survival as a function of age and drought severity between sampling occasions. To account for variation in detection methods, we also compared recapture probabilities between colonies monitored with hand‐netting alone and those with both hand‐netting and passive antenna arrays. We found that juvenile survival (0.20–0.44) was lower than adult survival (0.72–0.89), both juvenile and adult survival were negatively affected by drought, and detection probability was lower for bats recaptured solely with hand‐nets compared to bats detected via hand‐netting and pass‐through antenna arrays. Given that drought frequency and severity are projected to increase in California, Townsend's big‐eared bats will likely face heightened population declines. Our findings provide benchmarks for long‐term monitoring and assessing management effectiveness.

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Cite This Study

Hamilton et al. (2026) studied this question.

synapsesocial.com/papers/69af958570916d39fea4d285https://doi.org/10.1002/jwmg.70190
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