Decreased physical performance of congenic mice with mismatch between the nuclear and the mitochondrial genome
スポンサーリンク
概要
- 論文の詳細を見る
Maternal transmission of mitochondrial DNA (mtDNA) allows us to generate mtDNA congenic strain by repeating backcrosses of female mice to male mice of an inbred strain, which carries different mtDNA haplotype from that of the female progenitor. Since genetic backgrounds of inbred strains commonly used (e.g., C57BL/6J [B6] and BALB/c) are mainly derived from an European subspecies of Mus musculus domesticus, congenic strains, in which mtDNA originated from an Asian subspecies M. musculus musculus or an European species M. spretus, give in vivo condition that mismatch occurs between the mitochondrial and the nuclear genome. So far, little has been known how the mismatch condition affects the physiological phenotype of the mice. To address this question, we established two mtDNA congenic strains, C57BL/6J(B6)-mtSPR and BALB/c-mtSHH, which carry M. spretus- and M. m. musculus-derived mtDNAs, representing the conditions of interspecific and intersubspecific mitochondrial-nuclear genome mismatch, respectively. Using these congenic strains, we examined their physical performance by measuring their running time on a treadmill belt until exhaustion. The result clearly showed that the mtDNA congenic strains manifested a significant decrease in the level of physical performance, when compared with their progenitor strains. It also appeared that the congenic mice manifested growth rate. Thus, all results indicated that mismatch between the mitochondrial and the nuclear genome causes phenotypic changes in individuals of mice.
- 日本遺伝学会の論文
著者
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YONEKAWA Hiromichi
Department of Laboratory Animal Science, The Tokyo Metropolitan Institute of Medical Science
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Atomi Yoriko
東京大学 総合文化研究科
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Atomi Y
Univ. Tokyo Tokyo Jpn
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Atomi Yoriko
Department Of Life Sciences The Graduate School Of Arts & Sciences The University Of Tokyo
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Atomi Yoriko
Department Of Life Science Graduate School Of Arts And Science University Of Tokyo
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KANEDA Hideki
Department of Laboratory for Animal Science, Tokyo Metropolitan Institute of Medical Science
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IMAI Hiroshi
Laboratory of Reproductive Biology, Graduate School of Agriculture, Kyoto University
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Kaneda H
Tokyo Metropolitan Inst. Medical Sci. Tokyo Jpn
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Kaneda Hideki
Department Of Laboratory For Animal Science Tokyo Metropolitan Institute Of Medical Science
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Yonekawa Hiromichi
Department Of Laboratory For Animal Science Tokyo Metropolitan Institute Of Medical Science
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Yonekawa Hiromichi
Tokyo Metropolitan Inst. Of Medical Sci.
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Yonekawa Hiromichi
Dep. Of Lab. Animal Sci. The Tokyo Metropolitan Inst. Of Medical Sci.
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Yonekawa Hiromichi
Department Of Laboratory Animal Science The Tokyo Metropolitan Institute Of Medical Science (rinshok
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NAGAO Yasumitsu
Laboratory of Reproductiue Biotechnology, National Institute of Animal Industry
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TOTSUKA Yoshikazu
Department of Life Science, Graduate School of Arts and Science, University of Tokyo
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LINDAHL Kirsten
Department of Microbiology and Biochemistry, Howard Hughes Medical Institute
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Yonekawa H
Department Of Laboratory Animal Science The Tokyo Metroporitan Institute Of Medical Science
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Imai H
Univ. Tsukuba
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Yonekawa H
Tokyo Metropolitan Inst. Of Medical Sci.
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Yonekawa Hiromichi
Department Of Animal Science The Tokyo Metropolitan Institute Of Medical Science
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Imai H
Institute Of Engineering Mechanics University Of Tsukuba
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Lindahl Kirsten
Department Of Microbiology And Biochemistry Howard Hughes Medical Institute
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Atomi Y
Department Of Life Sciences The Graduate School Of Arts & Sciences The University Of Tokyo
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Nagao Yasumitsu
Laboratory Of Reproductiue Biotechnology National Institute Of Animal Industry
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Totsuka Yoshikazu
Department Of Life Science Graduate School Of Arts And Science University Of Tokyo
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Imai Hiroshi
Laboratory Of Reproductive Biology Division Of Applied Biosciences Graduate School Of Agriculture Ky
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