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Hierarchical spatial structure of genetically variable nucleopolyhedroviruses infecting cyclic populations of western
Dawn Cooper1, Jenny S Cory, Judith H Myers
1Centre for Biodiversity Research, Department of Zoology, University of British Columbia, 6270 University Boulevard, Vancouver, B.C., Canada.
Abstract:
The cyclic population dynamics of western tent caterpillars, Malacosoma californicum pluviale, are associated with epizootics of a nucleopolyhedrovirus, McplNPV. Given the dynamic fluctuations in host abundance and levels of viral infection, host resistance and virus virulence might be expected to change during different phases of the cycle. As a first step in determining if McplNPV virulence and population structure change with host density, we used restriction fragment length polymorphism (RFLP) analysis to examine the genetic diversity of McplNPV infecting western tent caterpillar populations at different spatial scales. Thirteen dominant genetic variants were identified in 39 virus isolates (individual larvae) collected from field populations during one year of low host density, and another distinct variant was discovered among nine additional isolates in two subsequent years of declining host density. The distribution of these genetic variants was not random and indicated that the McplNPV population was structured at several spatial levels. A high proportion of the variation could be explained by family grouping, which suggested that isolates collected within a family were more likely to be the same than isolates compared among populations. Additionally, virus variants from within populations (sites) were more likely to be the same than isolates collected from tent caterpillar populations on different islands. This may indicate that there is limited mixing of virus among tent caterpillar families and populations when host population density is low. Thus there is potential for the virus to become locally adapted to western tent caterpillar populations in different sites. However, no dominant genotype was observed at any site. Whether and how selection acts on the genetically diverse nucleopolyhedrovirus populations as host density changes will be investigated over the next cycle of tent caterpillar populations.
Insights
Genetic variants of the western tent caterpillar nucleopolyhedrovirus (McplNPV) show structured populations linked to host density. Limited virus mixing suggests potential local adaptation, with no single genotype dominating any site.
Area of Science:
- Ecology
- Virology
- Genetics
Background:
- Cyclic population dynamics of western tent caterpillars (Malacosoma californicum pluviale) are linked to nucleopolyhedrovirus (McplNPV) epizootics.
- Host resistance and virus virulence may change with host abundance and viral infection levels during population cycles.
Purpose of the Study:
- To investigate if McplNPV virulence and population structure change with host density.
- To examine the genetic diversity and spatial structure of McplNPV infecting western tent caterpillars.
Main Methods:
- Restriction fragment length polymorphism (RFLP) analysis was used to genotype 39 McplNPV isolates from field populations during low host density.
- An additional 9 isolates were analyzed from subsequent years of declining host density.
- Genetic variants were identified and their distribution analyzed across different spatial scales (families, sites, islands).
Main Results:
- Thirteen dominant McplNPV genetic variants were identified during low host density, with another distinct variant found in declining host density years.
- McplNPV population structure was observed at multiple spatial levels, with significant variation explained by family grouping and site-level similarity.
- Virus variants were more similar within families and sites than between islands, suggesting limited mixing at low host densities.
Conclusions:
- Limited mixing of McplNPV among tent caterpillar families and populations at low host densities indicates potential for local adaptation.
- No dominant genotype was found at any specific site, suggesting complex population dynamics.
- Further investigation is needed to understand how selection acts on genetically diverse McplNPV populations as host density fluctuates.
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