Temperature affects predation of schistosome-competent snails by a novel invader, the marbled crayfish Procambarus virginalis

Author:

Faiad Sara M.,Williams Maureen A.ORCID,Goodman Maurice,Sokolow Susanne,Olden Julian D.,Mitchell Kaitlyn,Andriantsoa Ranja,Gordon Jones Julia Patricia,Andriamaro Luciano,Ravoniarimbinina Pascaline,Rasamy Jeanne,Ravelomanana Tsilavina,Ravelotafita Salohy,Ravo Ranaivosolo,Rabinowitz Peter,De Leo Giulio A.,Wood Chelsea L.ORCID

Abstract

The human burden of environmentally transmitted infectious diseases can depend strongly on ecological factors, including the presence or absence of natural enemies. The marbled crayfish (Procambarus virginalis) is a novel invasive species that can tolerate a wide range of ecological conditions and colonize diverse habitats. Marbled crayfish first appeared in Madagascar in 2005 and quickly spread across the country, overlapping with the distribution of freshwater snails that serve as the intermediate host of schistosomiasis–a parasitic disease of poverty with human prevalence ranging up to 94% in Madagascar. It has been hypothesized that the marbled crayfish may serve as a predator of schistosome-competent snails in areas where native predators cannot and yet no systematic study to date has been conducted to estimate its predation rate on snails. Here, we experimentally assessed marbled crayfish consumption of uninfected and infected schistosome-competent snails (Biomphalaria glabrata and Bulinus truncatus) across a range of temperatures, reflective of the habitat range of the marbled crayfish in Madagascar. We found that the relationship between crayfish consumption and temperature is unimodal with a peak at ~27.5°C. Per-capita consumption increased with body size and was not affected either by snail species or their infectious status. We detected a possible satiation effect, i.e., a small but significant reduction in per-capita consumption rate over the 72-hour duration of the predation experiment. Our results suggest that ecological parameters, such as temperature and crayfish weight, influence rates of consumption and, in turn, the potential impact of the marbled crayfish invasion on snail host populations.

Funder

School of Aquatic and Fishery Sciences

Graduate School, University of Washington

foundry10

National Science Foundation

EarthLab, University of Washington

UW Population Health Initiative

Belmont collaborative Forum on Climate, Environment and Health

Higher Education Funding Council for Wales to Bangor University

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

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