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April 3, 2026Royal Society Open Science0 citationsOpen Access

Small cumulative survival costs of enzootic disease could suppress long-term population size

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BGBrad M. GloriosoGDGraziella V. DiRenzoJLJeffrey M. Lorch

Key Points

  • This research investigates how enzootic disease affects the population dynamics of a snake community.
  • Studied a Louisiana snake community over three years.
  • Applied a multi-state Jolly–Seber model with disease-state classification.
  • Compared survival probabilities of infected and uninfected snake hosts.
  • No significant differences in survival probabilities between infected and uninfected snakes.
  • Recruitment rates were slightly higher for infected hosts in two species.
  • Projected populations showed higher abundance in disease-absent scenarios than disease-present ones.

Abstract

Abstract Fungal pathogens can cause epizootics that result in widespread mortality and rapid population declines in some species. However, even in the absence of high disease-induced mortality, enzootic mycoses could have large-scale impacts on host population dynamics. Here, we examined the effects of ophidiomycosis, an enzootic fungal disease, on a Louisiana snake community over a 3-year period using a multi-state Jolly–Seber model with disease-state misclassification. We did not detect a difference between the average weekly apparent survival probability of uninfected and infected hosts for either Nerodia species or Thamnophis proximus. We also found a strong positive association between snout-to-vent length and weekly apparent survival probability across all species. We found that recruitment of infected hosts was slightly higher than recruitment of uninfected hosts for two of the three species. Population projections suggested divergent trajectories between disease-present and disease-absent scenarios, where disease-absent populations had higher abundance than disease-present populations. Our results highlight that small differences in survival can accumulate over time, as well as the challenges of quantifying population-level impacts of enzootic diseases when survival differences are not readily detected, underscoring the importance of continued long-term monitoring to assess whether ophidiomycosis affects snake population dynamics.

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Cite This Study

Glorioso et al. (2026) studied this question.

synapsesocial.com/papers/69cf5f005a333a821460dd47https://doi.org/10.1098/rsos.251694
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of ophidiomycosis on movement, survival, and reproduction of eastern foxsnakes (Pantherophis vulpinus)2024 · 1 citations
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  3. 3Contribution of host species and pathogen clade to snake fungal disease hotspots in Europe2024 · 5 citations
  4. 4Ophidiomyces ophidiicola in Northern Pine Snakes (Pituophis m. melanoleucus) in New Jersey: Known-Aged Individuals Indicate Endemic Status, Recovery and Reinfection, and Survival at Least 8 Years Post-Infection2026
  5. 5Surveillance of Ophidiomyces ophidiicola in Snakes, Primarily Eastern Wormsnakes (Carphophis amoenus), in Central Virginia, USA, Based on Swab and Tissue Sampling.2026