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Biology subjects

Jenkinson, T. S.

Publications and source records attributed to Jenkinson, T. S..

2 recordsLinked to original sources

DNA virus BdDV-1 of the amphibian pathogen Batrachochytrium dendrobatidis is associated with hypervirulence

The Global Panzootic Lineage (GPL) of the pathogenic fungus Batrachochytrium dendrobatidis (Bd) has caused severe amphibian population declines, yet the drivers underlying the high frequency of GPL in regions of amphibian decline are unclear. Using publicly available Bd genome sequences, we identified multiple non-GPL Bd isolates that contain a circular Rep-encoding single stranded DNA (CRESS)-like virus which we named BdDV-1. We further sequenced and constructed genome assemblies with long read sequences to find that the virus is integrated into the nuclear genome in some strains. Attempts to cure virus positive isolates were unsuccessful, however, phenotypic differences between naturally virus positive and virus negative Bd isolates suggested that BdDV-1 decreases the growth of its host in vitro but increases the virulence of its host in vivo. BdDV-1 is the first described CRESS DNA mycovirus of zoosporic true fungi with a distribution inversely associated with the emergence of the panzootic lineage.

microbiology↗

Coinfection with chytrid genotypes drives divergent infection dynamics reflecting broad epidemiological patterns

By altering the abundance, diversity, and distribution of species -- and their pathogens -- globalization may inadvertently select for more virulent pathogens. In Brazils Atlantic Forest, a hotspot of amphibian biodiversity, the pet trade has facilitated the co-occurrence of previously isolated enzootic and panzootic lineages of the pathogenic amphibian-chytrid ( Bd) and generated new virulent recombinant genotypes ( hybrid). Epidemiological data indicate that amphibian declines are most severe in hybrid zones, suggesting that coinfections are causing more severe infections or selecting for higher virulence. We investigated how coinfections involving these genotypes shaped virulence and transmission. Overall, coinfection favored the more virulent and competitively superior panzootic genotype, despite dampening its virulence and transmission. However, for the least virulent and least competitive genotype, coinfection increased both pathogen virulence and transmission. Thus, by integrating experimental and epidemiological data, our results provide mechanistic insight into how globalization can select for, and propel, the emergence of introduced hypervirulent lineages, such as the globally distributed panzootic lineage of Bd.

ecology↗