4.4 Article

Multilocus analysis of variation and speciation in the closely related species Arabidopsis halleri and A-lyrata

Journal

GENETICS
Volume 166, Issue 1, Pages 373-388

Publisher

GENETICS SOCIETY AMERICA
DOI: 10.1534/genetics.166.1.373

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Nucleotide variation in eight effectively unlinked genes was surveyed in species-wide samples of the closely related outbreeding species Arabidopsis halleri and A. lyrata ssp. petraea and in three of these genes in A. lyrata ssp. lyrata mid A. thaliana. Significant genetic differentiation was observed more frequently in A. l. petrea than in A. halleri. Average estimates of nucleotide variation were highest in A. l. petraea and lowest in A. l. lyrata, reflecting differences among species in effective population size. The low level of variation in A. l. lyrata is concordant with a bottleneck effect associated with its origin. The A. halleri/A. l. petraea speciation process was studied, considering the orthologous sequences of an outgroup species (A. thaliana). The high number of ancestral mutations relative to exclusive polymorphisms detected in A. halleri mid A. l. petraea, the significant results of the multilocus Fay mid Wu H tests, mid haplotype sharing between the species indicate introgression subsequent to speciation. Average among-population variation in A. halleri and A. l. petraea was similar to1.5- mid 3-fold higher than that in the inbreeder A. thaliana. The detected reduction of variation in A. thaliana is less than that expected from differences in mating system alone, and therefore from selective processes related to differences in the effective recombination rate, but could be explained by differences in population structure.

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