47 research outputs found
Seasonal Pattern of Batrachochytrium dendrobatidis Infection and Mortality in Lithobates areolatus: Affirmation of Vredenburg's “10,000 Zoospore Rule”
To fully comprehend chytridiomycosis, the amphibian disease caused by the chytrid fungus Batrachochytrium dendrobatidis (Bd), it is essential to understand how Bd affects amphibians throughout their remarkable range of life histories. Crawfish Frogs (Lithobates areolatus) are a typical North American pond-breeding species that forms explosive spring breeding aggregations in seasonal and semipermanent wetlands. But unlike most species, when not breeding Crawfish Frogs usually live singly—in nearly total isolation from conspecifics—and obligately in burrows dug by crayfish. Crayfish burrows penetrate the water table, and therefore offer Crawfish Frogs a second, permanent aquatic habitat when not breeding. Over the course of two years we sampled for the presence of Bd in Crawfish Frog adults. Sampling was conducted seasonally, as animals moved from post-winter emergence through breeding migrations, then back into upland burrow habitats. During our study, 53% of Crawfish Frog breeding adults tested positive for Bd in at least one sample; 27% entered breeding wetlands Bd positive; 46% exited wetlands Bd positive. Five emigrating Crawfish Frogs (12%) developed chytridiomycosis and died. In contrast, all 25 adult frogs sampled while occupying upland crayfish burrows during the summer tested Bd negative. One percent of postmetamorphic juveniles sampled were Bd positive. Zoospore equivalents/swab ranged from 0.8 to 24,436; five out of eight frogs with zoospore equivalents near or >10,000 are known to have died. In summary, Bd infection rates in Crawfish Frog populations ratchet up from near zero during the summer to over 25% following overwintering; rates then nearly double again during and just after breeding—when mortality occurs—before the infection wanes during the summer. Bd-negative postmetamorphic juveniles may not be exposed again to this pathogen until they take up residence in crayfish burrows, or until their first breeding, some years later
Impact of asynchronous emergence of two lethal pathogens on amphibian assemblages
Emerging diseases have been increasingly associated with population declines, with co-infections
exhibiting many types of interactions. The chytrid fungus (Batrachochytrium dendrobatidis) and
ranaviruses have extraordinarily broad host ranges, however co-infection dynamics have been largely
overlooked. We investigated the pattern of co-occurrence of these two pathogens in an amphibian
assemblage in Serra da Estrela (Portugal). The detection of chytridiomycosis in Portugal was linked
to population declines of midwife-toads (Alytes obstetricans). The asynchronous and subsequent
emergence of a second pathogen - ranavirus - caused episodes of lethal ranavirosis. Chytrid effects
were limited to high altitudes and a single host, while ranavirus was highly pathogenic across multiple
hosts, life-stages and altitudinal range. This new strain (Portuguese newt and toad ranavirus – member
of the CMTV clade) caused annual mass die-offs, similar in host range and rapidity of declines to other
locations in Iberia affected by CMTV-like ranaviruses. However, ranavirus was not always associated
with disease, mortality and declines, contrasting with previous reports on Iberian CMTV-like ranavirosis.
We found little evidence that pre-existing chytrid emergence was associated with ranavirus and the
emergence of ranavirosis. Despite the lack of cumulative or amplified effects, ranavirus drove declines
of host assemblages and changed host community composition and structure, posing a grave threat to
all amphibian populations