Examination of OLETF-derived non-insulin-dependent diabetes mellitus QTL by construction of a series of congenic rats |
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Authors: | Hiroyuki Kose Daniel H. Moralejo Tomoe Ogino Akira Mizuno Takahisa Yamada Kozo Matsumoto |
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Affiliation: | (1) Institute for Animal Experimentation, University of Tokushima School of Medicine, Kuramoto, Tokushima 770-8503, Japan, JP;(2) Department of Laboratory Medicine, University of Tokushima School of Medicine, Kuramoto, Tokushima 770-8503, Japan, JP;(3) Laboratory of Animal Breeding and Genetics, Graduate School of Agriculture, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan, JP |
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Abstract: | The Otuska Long-Evans Tokushima Fatty (OLETF) rat is one of the well-characterized animal models for the study of type 2 diabetes. Our previous QTL mapping identified 11 loci responsible for non-insulin-dependent diabetes mellitus (NIDDM) susceptibility in the OLETF rat. Here we generated a series of congenic animals by individually introgressing all 11 OLETF-derived NIDDM loci into a normoglycemic F344 background. Subsequent oral glucose tolerance test revealed that the congenic strains for Nidd1/of, Nidd2/of, Nidd3/of Nidd4/of, Nidd7/of, and Nidd10/of showed significantly higher levels of blood glucose in comparison with parental host strain F344. Furthermore, simultaneously made heterozygote animals for Nidd1/of and Nidd2/of did not increase blood glucose levels, indicating that these loci are recessively inherited as predicted by the QTL analysis. Congenic strains for the other five loci—Nidd5/of, Nidd6/of, Nidd8/of, Nidd9/of, and Nidd11/of—were apparently normoglycemic, presumably owing to heterosis or because the effect of these loci may not be detected unless interactions with other OLETF genes exist. We believe that these congenic strains should provide useful agents for decomposing complex diabetic traits and for positional cloning. |
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