Data from: The hidden history of the snowshoe hare, Lepus americanus: extensive mitochondrial DNA introgression inferred from multilocus genetic variation
Data files
Aug 14, 2014 version files 2.67 MB
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1_SPTBN1_lnrb.fas
100.80 KB
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1_SPTBN1_phased.fas
116.59 KB
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1_SPTBN1_raw.fas
58.20 KB
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1SPTBN1_with_outgroup.fas
101.94 KB
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2_PRKCI_lnrb.fas
67.44 KB
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2_PRKCI_phased.fas
77.91 KB
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2_PRKCI_raw.fas
38.87 KB
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2_PRKCI_with_outgroup.fas
67.41 KB
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3_DARC_lnrb_final.fas
126.61 KB
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3_DARC_phased_final.fas
147.73 KB
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3_DARC_raw_final_final.fas
73.78 KB
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3_DARC_with_outgroup_final.fas
128.16 KB
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4_KITLG_lnrb.fas
77.05 KB
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4_KITLG_phased.fas
101.47 KB
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4_KITLG_raw.fas
50.64 KB
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4_KITLG_with_outgroup.fas
78 KB
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5_TF_lnrb.fas
58.01 KB
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5_TF_phased.fas
72.57 KB
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5_TF_raw.fas
36.19 KB
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5_TF_with_outgroup.fasta
59.38 KB
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6_POLA1_lnrb.fas
60.65 KB
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6_POLA1_phased_final.fas
105.48 KB
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6_POLA1_raw_final.fas
76.39 KB
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6_POLA1_with_outgroup.fas
61.23 KB
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7_GRIA3_lnrb_final.fas
107.28 KB
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7_GRIA3_phased_final.fas
110.25 KB
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7_GRIA3_raw.fas
80.34 KB
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7_GRIA3_with_outgroup_final.fas
75.95 KB
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8_SRY_raw.fas
89.04 KB
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8_SRY_with_outgroup.fas
93.56 KB
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9_CYTB_raw.fas
54.34 KB
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9_CYTB_with_outgroups.fas
57.21 KB
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CYTB_Lepus_spp.fas
60.04 KB
Abstract
Hybridization drives the evolutionary trajectory of many species or local populations, and assessing the geographic extent and genetic impact of interspecific gene flow may provide invaluable clues to understand population divergence or the adaptive relevance of admixture. In North America, hares (Lepus spp.) are key species for ecosystem dynamics and their evolutionary history may have been affected by hybridization. Here we reconstructed the speciation history of the three most widespread hares in North America - the snowshoe hare (Lepus americanus), the white-tailed jackrabbit (L. townsendii) and the black-tailed jackrabbit (L. californicus) - by analyzing sequence variation at eight nuclear markers and one mitochondrial DNA (mtDNA) locus (6 240 bp; 94 specimens). A multilocus-multispecies coalescent-based phylogeny suggests that L. americanus diverged ~2.7 Mya and that L. californicus and L. townsendii split more recently (~1.2 Mya). Within L. americanus a deep history of cryptic divergence (~2.0 Mya) was inferred, which coincides with major speciation events in other North American species. While the isolation-with-migration model suggested that nuclear gene flow was generally rare or absent among species or major genetic groups, coalescent simulations of mtDNA divergence revealed historical mtDNA introgression from L. californicus into the Pacific Northwest populations of L. americanus. This finding marks a history of past reticulation between these species, which may have affected other parts of the genome and influence the adaptive potential of hares during climate change.