Abstract
If potential morphologically cryptic species, identified based on differentiated mitochondrial DNA, express ecological divergence, this increases support for their treatment as distinct species. However, mitochondrial DNA introgression hampers the correct estimation of ecological divergence. We test the hypothesis that estimated niche divergence differs when considering nuclear DNA composition or mitochondrial DNA type as representing the true species range. We use empirical data of two crested newt species (Amphibia: Triturus) which possess introgressed mitochondrial DNA from a third species in part of their ranges. We analyze the data in environmental space by determining Fisher distances in a principal component analysis and in geographical space by determining geographical overlap of species distribution models. We find that under mtDNA guidance in one of the two study cases niche divergence is overestimated, whereas in the other it is underestimated. In the light of our results we discuss the role of estimated niche divergence in species delineation. Copyright: © 2014 Reekie et al.
Cite
CITATION STYLE
Wielstra, B., & Arntzen, J. W. (2014). Exploring the effect of asymmetric mitochondrial dna introgression on estimating niche divergence in morphologically cryptic species. PLoS ONE, 9(4). https://doi.org/10.1371/journal.pone.0095504
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.