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Genomics|January 8, 1999
Characterization of the mouse Src homology 3 domain gene Sh3d2c on Chr 7 demonstrates coexpression with huntingtin in the brain and identifies the processed pseudogene Sh3d2c-ps1 on Chr 2U Zechner, S Scheel, M Hemberger, et al.Genomics|May 1, 1992
Fine genetic localization of the gene for autosomal dominant polycystic kidney disease (PKD1) with respect to physically mapped markersS Somlo, B Wirth, G G Germino, et al.Genome Research|December 4, 2001
Advanced integrated mouse YAC map including BAC frameworkL C Schalkwyk, B Cusack, I Dunkel, et al.Heredity|March 17, 2011
Partial short-read sequencing of a highly inbred Iberian pig and genomics inference thereofA Esteve-Codina, R Kofler, H Himmelbauer, et al.Genomics|May 1, 1992
The gene for autosomal dominant polycystic kidney disease lies in a 750-kb CpG-rich regionG G Germino, D Weinstat-Saslow, H Himmelbauer, et al.Proceedings of the National Academy of Sciences of the United States of America|January 1, 1992
Construction of a map of chromosome 16 by using radiation hybridsI Ceccherini, G Romeo, S Lawrence, et al.Journal of Evolutionary Biology|March 11, 2004
Divergent genetic and epigenetic post-zygotic isolation mechanisms in Mus and PeromyscusU Zechner, W Shi, M Hemberger, et al.Genomics|November 1, 2000
High-throughput scanning of the rat genome using interspersed repetitive sequence-PCR markersC Gösele, L Hong, T Kreitler, et al.American Journal of Human Genetics|February 1, 1993
Rubinstein-Taybi syndrome caused by submicroscopic deletions within 16p13.3M H Breuning, H G Dauwerse, G Fugazza, et al.Nature Communications|June 7, 2017
Crop wild relative populations of Beta vulgaris allow direct mapping of agronomically important genesGina G Capistrano-Gossmann, D Ries, D Holtgräwe, et al.Pageof 3