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Correlates of virulence in a frog-killing fungal pathogen: evidence from a California amphibian decline.
Piovia-Scott J
,
Pope K
,
Worth SJ
,
Rosenblum EB
,
Poorten T
,
Refsnider J
,
Rollins-Smith LA
,
Reinert LK
,
Wells HL
,
Rejmanek D
,
Lawler S
,
Foley J
.
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The fungal pathogen Batrachochytrium dendrobatidis (Bd) has caused declines and extinctions in amphibians worldwide, and there is increasing evidence that some strains of this pathogen are more virulent than others. While a number of putative virulence factors have been identified, few studies link these factors to specific epizootic events. We documented a dramatic decline in juvenile frogs in a Bd-infected population of Cascades frogs (Rana cascadae) in the mountains of northern California and used a laboratory experiment to show that Bd isolated in the midst of this decline induced higher mortality than Bd isolated from a more stable population of the same species of frog. This highly virulent Bd isolate was more toxic to immune cells and attained higher density in liquid culture than comparable isolates. Genomic analyses revealed that this isolate is nested within the global panzootic lineage and exhibited unusual genomic patterns, including increased copy numbers of many chromosomal segments. This study integrates data from multiple sources to suggest specific phenotypic and genomic characteristics of the pathogen that may be linked to disease-related declines.
Adams,
Using occupancy models to understand the distribution of an amphibian pathogen, Batrachochytrium dendrobatidis.
2010, Pubmed
Adams,
Using occupancy models to understand the distribution of an amphibian pathogen, Batrachochytrium dendrobatidis.
2010,
Pubmed
Berger,
Chytridiomycosis causes amphibian mortality associated with population declines in the rain forests of Australia and Central America.
1998,
Pubmed
Berger,
Virulence of the amphibian chytrid fungus Batrachochytium dendrobatidis varies with the strain.
2005,
Pubmed
Boyle,
Rapid quantitative detection of chytridiomycosis (Batrachochytrium dendrobatidis) in amphibian samples using real-time Taqman PCR assay.
2004,
Pubmed
Briggs,
Enzootic and epizootic dynamics of the chytrid fungal pathogen of amphibians.
2010,
Pubmed
Bull,
VIRULENCE.
1994,
Pubmed
Farrer,
Multiple emergences of genetically diverse amphibian-infecting chytrids include a globalized hypervirulent recombinant lineage.
2011,
Pubmed
Farrer,
Chromosomal copy number variation, selection and uneven rates of recombination reveal cryptic genome diversity linked to pathogenicity.
2013,
Pubmed
Fisher,
Proteomic and phenotypic profiling of the amphibian pathogen Batrachochytrium dendrobatidis shows that genotype is linked to virulence.
2009,
Pubmed
Fisher,
Global emergence of Batrachochytrium dendrobatidis and amphibian chytridiomycosis in space, time, and host.
2009,
Pubmed
Fites,
The invasive chytrid fungus of amphibians paralyzes lymphocyte responses.
2013,
Pubmed
,
Xenbase
Gahl,
Varying responses of northeastern North American amphibians to the chytrid pathogen Batrachochytrium dendrobatidis.
2012,
Pubmed
Garcia,
Survival of three species of anuran metamorphs exposed to UV-B radiation and the pathogenic fungus Batrachochytrium dendrobatidis.
2006,
Pubmed
Hyatt,
Diagnostic assays and sampling protocols for the detection of Batrachochytrium dendrobatidis.
2007,
Pubmed
Joneson,
Genomic transition to pathogenicity in chytrid fungi.
2011,
Pubmed
Kilpatrick,
The ecology and impact of chytridiomycosis: an emerging disease of amphibians.
2010,
Pubmed
Kriger,
Latitudinal variation in the prevalence and intensity of chytrid (Batrachochytrium dendrobatidis) infection in eastern Australia.
2007,
Pubmed
LaDeau,
West Nile virus emergence and large-scale declines of North American bird populations.
2007,
Pubmed
Langhammer,
A fungal pathogen of amphibians, Batrachochytrium dendrobatidis, attenuates in pathogenicity with in vitro passages.
2013,
Pubmed
Lenski,
The evolution of virulence in parasites and pathogens: reconciliation between two competing hypotheses.
1994,
Pubmed
Lips,
Emerging infectious disease and the loss of biodiversity in a Neotropical amphibian community.
2006,
Pubmed
Lipsitch,
Transmission dynamics and control of severe acute respiratory syndrome.
2003,
Pubmed
Phillips,
Do pathogens become more virulent as they spread? Evidence from the amphibian declines in Central America.
2013,
Pubmed
Pope,
Assessing changes in amphibian population dynamics following experimental manipulations of introduced fish.
2008,
Pubmed
Retallick,
A non-lethal technique for detecting the chytrid fungus Batrachochytrium dendrobatidis on tadpoles.
2006,
Pubmed
Retallick,
Strain differences in the amphibian chytrid Batrachochytrium dendrobatidis and non-permanent, sub-lethal effects of infection.
2007,
Pubmed
Richards-Zawacki,
Thermoregulatory behaviour affects prevalence of chytrid fungal infection in a wild population of Panamanian golden frogs.
2010,
Pubmed
Rodriguez,
Long-term endemism of two highly divergent lineages of the amphibian-killing fungus in the Atlantic Forest of Brazil.
2014,
Pubmed
Rosenblum,
Substrate-specific gene expression in Batrachochytrium dendrobatidis, the chytrid pathogen of amphibians.
2012,
Pubmed
Rosenblum,
Complex history of the amphibian-killing chytrid fungus revealed with genome resequencing data.
2013,
Pubmed
Smith,
Origins and evolutionary genomics of the 2009 swine-origin H1N1 influenza A epidemic.
2009,
Pubmed
Vredenburg,
Dynamics of an emerging disease drive large-scale amphibian population extinctions.
2010,
Pubmed
Wake,
Colloquium paper: are we in the midst of the sixth mass extinction? A view from the world of amphibians.
2008,
Pubmed
Yang,
PAML 4: phylogenetic analysis by maximum likelihood.
2007,
Pubmed
Zolan,
Inheritance of DNA methylation in Coprinus cinereus.
1986,
Pubmed