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Symbol
Name
ID
Chromosome
D1Mit270
DNA segment, Chr 1, Massachusetts Institute of Technology 270
MGI:91656
1
16 mapping experiments
Experiment Type Details Chromosome Reference
CROSS Cross Type: Backcross
1 J:25243 Mullick A, et al., High-resolution linkage map in the vicinity of the Lp locus. Genomics. 1995 Apr 10;26(3):479-88
CROSS Cross Type: Backcross
1 J:25243 Mullick A, et al., High-resolution linkage map in the vicinity of the Lp locus. Genomics. 1995 Apr 10;26(3):479-88
CROSS Cross Type: Backcross
1 J:44443 Murdoch JN, et al., Localization of the mouse gene encoding tyrosine kinase receptor type 10 on distal chromosome 1. Mamm Genome. 1997 Dec;8(12):941-2
CROSS Cross Type: Backcross
1 J:25244 Stanier P, et al., Genetic basis of neural tube defects: the mouse gene loop-tail maps to a region of chromosome 1 syntenic with human 1q21-q23. Genomics. 1995 Apr 10;26(3):473-8
TEXT-Congenic 1 J:33173 Morel L, et al., Production of congenic mouse strains carrying genomic intervals containing SLE-susceptibility genes derived from the SLE-prone NZM2410 strain. Mamm Genome. 1996 May;7(5):335-9
TEXT-Congenic 1 J:108589 Rocha-Campos AC, et al., Genetic and functional analysis of the Nkt1 locus using congenic NOD mice: improved Valpha14-NKT cell performance but failure to protect against type 1 diabetes. Diabetes. 2006 Apr;55(4):1163-70
TEXT-Genetic Cross 1 J:29379 Mullick A, et al., Nhlh1, a basic helix-loop-helix transcription factor, is very tightly linked to the mouse looptail (Lp) mutation. Mamm Genome. 1995 Oct;6(10):700-4
TEXT-Genetic Cross 1 J:29379 Mullick A, et al., Nhlh1, a basic helix-loop-helix transcription factor, is very tightly linked to the mouse looptail (Lp) mutation. Mamm Genome. 1995 Oct;6(10):700-4
TEXT-Genetic Cross 1 J:49043 Stanier P, et al., Paralogous sm22alpha (Tagln) genes map to mouse chromosomes 1 and 9: further evidence for a paralogous relationship. Genomics. 1998 Jul 1;51(1):144-7
TEXT-Physical Mapping 1 J:106743 Mouse Genome Informatics and NCBI UniSTS, UniSTS load for MIT markers. Database Download. 2006;
TEXT-QTL 1 J:69981 Johansson AC, et al., Genetic control of collagen-induced arthritis in a cross with NOD and C57BL/10 mice is dependent on gene regions encoding complement factor 5 and FcgammaRIIb and is not associated with loci controlling diabetes. Eur J Immunol. 2001 Jun;31(6):1847-56
TEXT-QTL 1 J:85818 Kelly MA, et al., The mapping of quantitative trait loci underlying strain differences in locomotor activity between 129S6 and C57BL/6J mice. Mamm Genome. 2003 Oct;14(10):692-702
TEXT-QTL 1 J:129301 Li Q, et al., Quantitative trait locus analysis of carotid atherosclerosis in an intercross between C57BL/6 and C3H apolipoprotein E-deficient mice. Stroke. 2008 Jan;39(1):166-73
TEXT-QTL 1 J:106521 Su Z, et al., Quantitative Trait Locus Analysis of Atherosclerosis in an Intercross Between C57BL/6 and C3H Mice Carrying the Mutant Apolipoprotein E Gene. Genetics. 2006 Mar;172(3):1799-807
TEXT-QTL 1 J:153521 Yuan Z, et al., Quantitative trait locus analysis of neointimal formation in an intercross between C57BL/6 and C3H/HeJ apolipoprotein E-deficient mice. Circ Cardiovasc Genet. 2009 Jun 1;2(3):220-228
TEXT-Radiation Hybrid 1 J:68900 The Jackson Laboratory Mouse Radiation Hybrid Database, Mouse T31 Radiation Hybrid Data Load. Database Release. 2004;

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last database update
12/10/2024
MGI 6.24
The Jackson Laboratory