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Jairus T, Mpumba R, Chinoya S, Tedersoo L. Invasion potential and host shifts of Australian and African ectomycorrhizal fungi in mixed eucalypt plantations.
Geographical range expansion or host shifts is amongst the various evolutionary forces that underlie numerous emerging diseases caused by fungal pathogens.
Much like the host shifts of Blepharida beetles onto chemically similar host plants, host shifts in butterflies may be constrained by plant secondary chemistry.
Similar to the examples mentioned above, host shifts among more distantly related plant groups were also common.
Host shifts are a common theme and do not seem to be limited by the host's degree of relatedness.
Ecological adaptation through host shifts and substratum specialization is likely to be an important mode of speciation and adaptive radiation in polypores (Skaven Seierstad et al. 2013).
In a more general sense, this implies that only a fraction of the host shifts will eventually result in a genetic differentiation between populations.
There is evidence that host shifts like the proposed saltational event observed in Proserpinus may convey a survival advantage through the acquisition of enemy-free space [23], [24].
All host shifts were coded as equally likely over the entire duration of the phylogenetic tree, and ancestral ranges were restricted to a maximum of two hosts.
Harvell et al. [39] argues that "host shifts" by known infectious agents are responsible for new disease outbreaks rather than by transmission of new agents.
Host shifts occurred in pv.
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