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Phenotypes associated with this allele
Allele Symbol
Allele Name
Allele ID
Bdh1tm1c(EUCOMM)Wtsi
targeted mutation 1c, Wellcome Trust Sanger Institute
MGI:6297074
Summary 1 genotype
Jump to Allelic Composition Genetic Background Genotype ID
cn1
Bdh1tm1c(EUCOMM)Wtsi/Bdh1tm1c(EUCOMM)Wtsi
Tg(Myh6-cre)2182Mds/0
involves: 129S4/SvJaeSor * C57BL/6 * FVB/N MGI:6303767


Genotype
MGI:6303767
cn1
Allelic
Composition
Bdh1tm1c(EUCOMM)Wtsi/Bdh1tm1c(EUCOMM)Wtsi
Tg(Myh6-cre)2182Mds/0
Genetic
Background
involves: 129S4/SvJaeSor * C57BL/6 * FVB/N
Find Mice Using the International Mouse Strain Resource (IMSR)
Mouse lines carrying:
Bdh1tm1c(EUCOMM)Wtsi mutation (1 available); any Bdh1 mutation (33 available)
Tg(Myh6-cre)2182Mds mutation (3 available)
phenotype observed in females
phenotype observed in males
N normal phenotype
mortality/aging
• slightly fewer than expected mice are present at weaning

cardiovascular system
• fasted mice exhibit increased left ventricular internal diameter and volume compared with control mice
• however, mice exhibit normal cardiac phenotype under basal conditions
• fasted mice exhibit reduced left ventricular fractional shortening and longitudinal strain rate compared with control mice
• 4 weeks after pressure overload induced by transverse aortic constriction combined with a small apical myocardial infarction (TAC/MI), mice exhibit more severe left ventricle dysfunction including lower left ventricle ejection fraction and greater left ventricle end-diastolic volume and end-systolic volume compared with control mice

muscle
• fasted mice exhibit reduced left ventricular fractional shortening and longitudinal strain rate compared with control mice
• 4 weeks after pressure overload induced by transverse aortic constriction combined with a small apical myocardial infarction (TAC/MI), mice exhibit more severe left ventricle dysfunction including lower left ventricle ejection fraction and greater left ventricle end-diastolic volume and end-systolic volume compared with control mice





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last database update
11/12/2024
MGI 6.24
The Jackson Laboratory