Parasites can play an important role in the dynamics of host populations, but empirical evidence remains sparse. We investigated the role of bot fly (Cuterebra spp.) parasitism in red-backed voles (Myodes gapperi) by first assessing the impacts of the parasite on the probability of vole survival under stressful conditions as well as on the reproductive activity of females. We then identified the main factors driving both the individual risk of infection and the abundance of bot flies inside red-backed voles. Finally, we evaluated the impacts of bot fly prevalence on the growth rate of vole populations between mid-July and mid-August. Thirty-six populations of red-backed voles were sampled in the boreal forest of Québec, Canada. The presence and the abundance of parasites in voles, two host life history traits (sex and body condition), three indices of habitat complexity (tree basal area, sapling basal area, coarse woody debris volume), and vole abundance were considered in models evaluating the effects of bot flies on host populations. We found that the probability of survival of red-backed voles in live traps decreased with bot fly infection. Both the individual risk of infection and the abundance of bot flies in red-backed voles were driven mainly by vole abundance rather than by the two host life history traits or the three variables of habitat complexity. Parasitism had population consequences: bot fly prevalence was linked to a decrease in short-term growth rate of vole populations over the summer. We found that bot flies have the potential to reduce survival of red-backed voles, an effect that may apply to large portions of populations.
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http://dx.doi.org/10.1007/s00442-008-1219-3 | DOI Listing |
Ecology
December 2024
Institute of Forestry and Conservation, John H. Daniels Faculty of Architecture, Landscape and Design (Forestry), University of Toronto, Toronto, Ontario, Canada.
Population outbreaks are characterized by irruptive changes in population density and connectivity resulting in rapid demographic and spatial expansion, often at the landscape scale. Outbreaks are common across multiple taxa, many of which inhabit northern ecosystems. Outbreaks of Lepidopteran defoliators in forest ecosystems are a particularly compelling example of this phenomenon, given the massive spatial scales over which these outbreaks can occur, their frequency, and socioeconomic impacts.
View Article and Find Full Text PDFTicks Tick Borne Dis
November 2024
Department of Biology, University of North Dakota, Grand Forks, ND, United States. Electronic address:
J Anim Ecol
March 2024
Department of Wildlife, Fisheries and Conservation Biology, University of Maine, Orono, Maine, USA.
Small mammals such as mice and voles play a fundamental role in the ecosystem service of seed dispersal by caching seeds in small hoards that germinate under beneficial conditions. Pilferage is a critical step in this process in which animals steal seeds from other individuals' caches. Pilferers often recache stolen seeds, which are often pilfered by new individuals, who may recache again, and so on, potentially leading to compounded increased dispersal distance.
View Article and Find Full Text PDFJ Vector Ecol
December 2023
Department of Entomology, Pennsylvania State University, University Park, PA 16802, U.S.A.
In the United States, there has been a steady increase in diagnosed cases of tick-borne diseases in people, most notably Lyme disease. The pathogen that causes Lyme disease, is transmitted by the blacklegged tick (). Several small mammals are considered key reservoirs of this pathogen and are frequently-used hosts by blacklegged ticks.
View Article and Find Full Text PDFJ Anim Ecol
February 2024
Department of Wildlife, Fisheries, and Conservation Biology, University of Maine, Orono, Maine, USA.
Despite numerous studies examining the fitness consequences of animal personalities, predictions concerning the relationship between personality and survival are not consistent with empirical observations. Theory predicts that individuals who are risky (i.e.
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