Body size evolution simultaneously creates and collapses species boundaries in a clade of scincid lizards
- 8 May 2007
- journal article
- research article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 274 (1619) , 1701-1708
- https://doi.org/10.1098/rspb.2007.0364
Abstract
Speciation is generally viewed as an irreversible process, although habitat alterations can erase reproductive barriers if divergence between ecologically differentiated species is recent. Reversed speciation might also occur if geographical contact is established between species that have evolved the same reproductive isolating barrier in parallel. Here, we demonstrate a loss of intrinsic reproductive isolation in a clade of scincid lizards as a result of parallel body size evolution, which has allowed for gene flow where large-bodied lineages are in secondary contact. An mtDNA phylogeny confirms the monophyly of the Plestiodon skiltonianus species complex, but rejects that of two size-differentiated ecomorphs. Mate compatibility experiments show that the high degree of body size divergence imposes a strong reproductive barrier between the two morphs; however, the strength of the barrier is greatly diminished between parallel-evolved forms. Since two large-bodied lineages are in geographical contact in the Sierra Nevada Mountains of California, we were also able to test for postzygotic isolation under natural conditions. Analyses of amplified fragment length polymorphisms show that extensive gene exchange is occurring across the contact zone, resulting in an overall pattern consistent with isolation by distance. These results provide evidence of reversed speciation between clades that diverged from a common ancestor more than 12Myr ago.Keywords
This publication has 43 references indexed in Scilit:
- Evolutionary basis of parallelism in North American scincid lizardsEvolution & Development, 2006
- Relaxed Phylogenetics and Dating with ConfidencePLoS Biology, 2006
- Mate recognition in a freshwater fish: geographical distance, genetic differentiation, and variation in female preference for local over foreign malesJournal of Evolutionary Biology, 2004
- Evidence for ecology's role in speciationNature, 2004
- PHYLOGEOGRAPHIC BREAKS WITHOUT GEOGRAPHIC BARRIERS TO GENE FLOWEvolution, 2002
- EVIDENCE FOR PARALLEL ECOLOGICAL SPECIATION IN SCINCID LIZARDS OF THE EUMECES SKILTONIANUS SPECIES GROUP (SQUAMATA: SCINCIDAE)Evolution, 2002
- Host-plant adaptation drives the parallel evolution of reproductive isolationNature, 2002
- PHYLOGEOGRAPHIC BREAKS WITHOUT GEOGRAPHIC BARRIERS TO GENE FLOWEvolution, 2002
- AFLP: a new technique for DNA fingerprintingNucleic Acids Research, 1995
- THE GENETICAL STRUCTURE OF POPULATIONSAnnals of Eugenics, 1949