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  1. ...wild mouse, Mus musculus molossinus . It is believed that subspecies molossinus has contributed substantially to the genome constitution of common laboratory strains of mice, although the majority of their genome is derived from the west European M. m. domesticus . Information on the molossinus...
  2. ..., K.L. , Donahue, L.R. , Paigen, B. , Forejt, J. ( 2008 ) Mouse consomic strains: Exploiting genetic divergence between Mus m. musculus and Mus m. domesticus subspecies . Genome Res. doi: 10.1101/gr.7160508 , (this issue) . ↵ Guénet, J.L. , Bonhomme, F. ( 2003 ) Wild mice: An ever...
  3. ...J. 2008. Mouse consomic strains: exploiting genetic divergence between Mus m. musculus and Mus m. domesticus subspecies. Genome Res 18: 509–515. doi:10.1101/gr.7160508 ↵Grey C, Baudat F, de Massy B. 2018. PRDM9, a driver of the genetic map. PLoS Genet 14: e1007479. doi:10.1371/journal.pgen.1007479...
  4. ...; Durrant et al. 2011; Foulds Mathes et al. 2011; Philip et al. 2011; Kelada et al. 2012, 2014; Thaisz et al. 2012; Ferris et al. 2013; Ferguson Table 1. Websites providing details for resources to study complex traits in mice Panel Websites Heterogeneous stock http://mus...
  5. ...stemming from three subspecies of the genus Mus : Mus m. domesticus (the occidental wild mice), Mus m. musculus (the oriental wild mice), and Mus m. castaneus (the Asiatic wild mice) ( Bonhomme et al. 1987 ). The of a given inbred strain is a unique mosaic, with variable proportions of these three...
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