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Viral tags as keys to advancing invasion genomics
Teun Everts1, Simon Dellicour2, Senne Heeren3
1Research Institute for Nature and Forest, Genetic Diversity, Geraardsbergen, Belgium; Department of Biology, Plant Conservation and Population Biology, KU Leuven, Heverlee, Belgium.
None:
Invasion genetics and genomics have greatly advanced the study of biological invasions, yet they often fail to resolve population dynamics at the fine spatiotemporal scales characteristic of most invasions. We propose shifting the focus away from the higher-order target species towards their viral symbionts, harnessing these as high-resolution 'genetic tags' to overcome many of these limitations. Owing to their comparably smaller genomes, shorter generation times, and higher mutation rates, most viruses evolve on timescales comparable to the invasion dynamics of their higher-order hosts, potentially better proxying and revealing recent dispersal patterns. We present a conceptual framework outlining how virus evolution may shed light on the contemporary spread of their non-native hosts, opening new avenues for invasion genetics, genomics, and management.
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