Lineage-specific trait variation generates widespread, contemporaneous coexistence and competitive exclusion dynamics in an invasive, multihost wildlife parasite
Garner, T. W.; Harrison, X. A.; Fenton, A.; Ghosh, P. N.; Verster, R.; Murray, K. A.; Brookes, L. M.; Allen, B. E.; Farrer, R. A.; Schmidt, B. R.; Bates, K. A.; Kruger, N.; Wolmarans, A.; Bosch, J.; Fisher, M. A.; Weldon, C.
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Invasive and highly virulent parasites are emerging worldwide, transported to new locations and into novel hosts by anthropogenic activities. Multiple introduction events lead to interactions amongst genetically dissimilar genotypes that can result in either competitive exclusion, coexistence, or cycling through a combination of the two. Here, we report how intra-lineage trait variation of the multihost amphibian parasite Batrachochytrium dendrobatidis drives contrasting outcomes of inter-lineage interactions on two continents, Europe and Africa. Through field surveys, competition experiments and mathematical modelling we show that interactions between the same two lineages in the two continents and in different hosts demonstrate both ends of the exclusion/coexistence continuum. Trait variation in one of the two predominating lineages, BdGPL, is responsible for these contrasting outcomes: In Europe, BdGPL is highly competitive and has constrained the distribution of the other, BdCAPE, to two locations. In Africa, BdGPL and BdCAPE can mutually invade host populations when the other lineage is already resident, potentially leading to coinfections and recombination. That these contrasting outcomes are prolonged and contemporaneous for the same two lineages shows that epidemiological models of invasive parasites need to account for trait variation both within and across lineages.
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