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March 8, 2026Philosophical Transactions of the Royal Society B Biological Sciences2 citationsOpen Access

Long-term field survey reveals salinity as key determinant of estuarine host infection by a non-native castrating parasite

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DPDarby L. PochtarGRGregory M. RuizCTCarolyn K. Tepolt

Key Points

  • To investigate how environmental factors influence the prevalence of infection by Loxothylacus panopaei in mud crabs over a 12-year period.
  • Conducted a 12-year field survey in Chesapeake Bay, examining salinity, temperature, and host demographics.
  • Analyzed infection prevalence in mud crabs in relation to environmental conditions and crab sizes.
  • Sampled a total of 102,632 crabs, observing variations in infection rates against a salinity gradient.
  • Infection prevalence ranged from 0 to 75.9%, peaking with higher salinity and temperature.
  • Larger crabs (>9 mm carapace width) exhibited increased infection rates, particularly under elevated salinity and temperature conditions.
  • Salinity emerged as the strongest predictor for infection prevalence, with low salinity providing a protective refuge.

Abstract

Long-term ecological studies are essential for understanding community structure and change. In estuaries, dynamic environmental gradients drive spatiotemporal shifts in populations through complex abiotic and biotic interactions. Biological invasions add novel relationships, including those between hosts and parasites. Estuarine environments often provide low-salinity refugia that reduce parasite pressure, slowing host resistance evolution by maintaining a reservoir of susceptible individuals. When naive hosts emerge from these refugia, they may support host recovery and supply new targets for parasites, diluting resistance in the population. Using a 12-year field survey across a salinity gradient in Chesapeake Bay, MD, USA, we examined how environmental conditions (salinity, temperature) and host demographics (% gravid females, total abundance and size) correlate with infection prevalence of the introduced castrating parasite Loxothylacus panopaei in native, white-fingered mud crabs (Rhithropanopeus harrisii). Infection prevalence varied from 0 to 75.9% (n = 102 632) and peaked with elevated salinity, temperature and host reproduction. Larger crabs (>9 mm carapace width) showed higher infection rates, especially under high salinity and temperature. Salinity was the most consistent predictor of infection, with low salinity (<10 ppt) providing refuge. These findings show how fluctuating environmental conditions structure parasite prevalence across scales, with implications for host population dynamics under climate change. This article is part of the theme issue 'Managing infectious marine diseases in wild populations'.

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Cite This Study

Pochtar et al. (2026) studied this question.

synapsesocial.com/papers/69ada804bc08abd80d5bb1cchttps://doi.org/10.1098/rstb.2025.0129
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