ABRUPT CLINE FOR SEX CHROMOSOMES IN A HYBRID ZONE BETWEEN TWO SPECIES OF MICE (original) (raw)
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The Jackson Laboratory Bar Harbor ME 04609 USA
Department of Biology and Museum of Zoology University of Michigan Ann Arbor MI 48109 USA
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Division of Biochemistry and Molecular Biology University of California Berkeley CA 94720 USA
Museum of Vertebrate Zoology University of California Berkeley CA 94720 USA
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Center for Statistical Consultation and Research University of Michigan Ann Arbor MI 48109 USA
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Division of Biochemistry and Molecular Biology University of California Berkeley CA 94720 USA
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The Jackson Laboratory Bar Harbor ME 04609 USA
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Present address: Division of Biological Sciences, University of Missouri, Columbia, MO 65211 USA.
Accepted:
04 February 1992
Published:
01 August 1992
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Priscilla K. Tucker, Richard D. Sage, John Warner, Allan C. Wilson, Eva M. Eicher, ABRUPT CLINE FOR SEX CHROMOSOMES IN A HYBRID ZONE BETWEEN TWO SPECIES OF MICE, Evolution, Volume 46, Issue 4, 1 August 1992, Pages 1146–1163, https://doi.org/10.1111/j.1558-5646.1992.tb00625.x
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Abstract
We compared the patterns of movement of sex chromosomal and autosomal loci along a 160 km transect across a zone of hybridization between M. domesticus and M. musculus in southern Germany and western Austria using seven genetic markers. These included one Y‐specific DNA sequence (YB10), two X‐specific loci (DXWas68 and DXWas31), and four autosomal isozyme loci (Es‐10, Es‐1, Mpi‐1, and Np‐1). Random effects logistic regression analysis enabled us to examine the relationship between M. domesticus allele frequency and geographic distance from the western edge of the hybrid zone and allowed statistical evaluation of differences in cline midpoint and width among loci. More limited movement was observed for all three sex chromosomal markers across the zone compared with three of the four autosomal markers. If differential movement reflects fitness differences of specific alleles (or alleles at closely linked loci) on a hybrid background, then alleles that move to a limited extent across a hybrid zone may contribute to hybrid breakdown between two species. The limited flow of both X‐ and Y‐specific alleles suggest that sex chromosomes have played an important role in Mus speciation.
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Author notes
Present address: Division of Biological Sciences, University of Missouri, Columbia, MO 65211 USA.
© 1992 The Society for the Study of Evolution
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