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Bezoar (Capra aegagrus) Is a Matriarchal Candidate for Ancestor of Domestic Goat (Capra hircus): Evidence from the Mitochondrial DNA Diversity

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Abstract

The leading hypothesis on the ancestor of domestic goats (Capra hircus) is that it is the wild goat called the bezoar or pasang (Capra aegagrus). To verify this hypothesis, we sequenced and compared the cytochrome b gene of mitochondrial DNA from six domestic goats and a bezoar. A further sequence for the markhor was taken from the database. In total we detected 51 nucleotide substitutions among the domestic goats, bezoar and markhor. However, only one specific nucleotide substitution was found between the domestic goats and the bezoar. On the other hand, 43 nucleotide substitutions were specific for the markhor. This result suggested a close relationship between the domestic goats and the bezoar. A neighbor-joining and parsimony phylogenetic tree constructed using the sequences showed that the domestic goats and the bezoar belong to the same cluster, while the markhor showed a distinct cluster separate from that of the domestic/bezoar cluster. This result was confirmed by trees based on the sequence of the mitochondrial displacement loop regions. These results suggest that the strongest candidate for a matriarchal ancestor of domestic goats is the bezoar.

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REFERENCES

  • Anderson, S., de Bruijn, M. H. L., Coulson, A. R., Eperon, I. C., Sanger, F., and Young, I. G. (1982). Complete sequence of bovine mitochondrial DNA: Concerted features of the mammalian mitochondrial genome. J. Mol. Biol. 156:683.

    Google Scholar 

  • Arai, K., Munechika, I., Ito, I., Kikkawa, A., Nakamura, K., Kanazawa, T., and Kosugiyama, M. (1997). Phylogenetic relationship of Caprini estimated by cytochrome b gene sequence analysis. Anim. Sci. Technol. (Jpn.) 68(2):148.

    Google Scholar 

  • Bököyi, S. (1974). History of Domestic Mammals in Central and Eastern Europe, Akadémiai Kiadó, Budapest.

    Google Scholar 

  • Bradley, D. G., MacHugh, D. E., Cunningham, P., Loftus, R. T. (1996). Mitochondrial diversity and the origins of African and European cattle. Proc. Natl. Acad. Sci. USA 93:5131.

    Google Scholar 

  • Felsenstein, J. (1993). PHYLIP (Phylogeny Inference Package), Version 3.5, University of California Herbarium, Berkeley.

    Google Scholar 

  • Gotoh, O. (1996). Significant improvement in accuracy of multiple protein sequence alignments by iterative refinement as assessed by reference to structural alignments. J. Mol. Biol. 264(4):823.

    Google Scholar 

  • Harris, D. R. (1962). The distribution and ancestry of the domestic goat. Proc. Linn. Soc. London 173:79.

    Google Scholar 

  • Herre, W. (1958). Abstammung und Domestikation der Haustiere. In Hammond, J., Johansson, I., and Haring, F. (eds.), Handbuch der Tierzüchtung, 1, Paul Parey, Hamburg and Berlin, p. 1.

    Google Scholar 

  • Herre, W., and Röhrs, M. (1973). Haustiere-Zoologish Gesehen, G. Fischer, Stuttgart.

    Google Scholar 

  • Irwin, D. M., Kocher, T. D., and Wilson, A. C. (1991). Evolution of cytochrome b gene of mammals. J. Mol. Evol. 32:128.

    Google Scholar 

  • Katsumata, M., Nozawa, K., Amano, T., Shinjyo, A., and Abe, T., (1981). Blood protein gene constitution of the Japanese Saanen breed of goat. Jap. J. Zootech. Sci., 52:553.

    Google Scholar 

  • Katsumata, M., Amano, T., Tanaka, K., Nozawa, K., Bahk, K., Park, B., and Lee, C. (1982). Blood protein variations of the Korean native goats (in Japanese). Jap. J. Zootech. Sci., 53:521.

    Google Scholar 

  • Kikkawa, Y., Amano, T., and Suzuki, H. (1995). Analysis of genetic diversity of domestic cattle in East and Southeast Asia in terms of variations in restriction sites and sequences of mitochondrial DNA. Biochem. Genet. 28:137.

    Google Scholar 

  • Loftus, R. T., Machugh, D. E., Bradley, D. G., Sharp, P. M., and Cunningham, P. (1994). Evidence for two independent domestications of cattle. Proc. Natl. Acad. Sci. USA 91:2757.

    Google Scholar 

  • Maniatis, T., Fritsch, E. F., and Sambrook, J. (1982). Molecular Cloning: A Laboratory Manual, Cold Spring Harbor Laboratory, Cold Spring Harbor, NY.

    Google Scholar 

  • Okumura, N., Ishiguro, N., Nakao, M., Matsui, A., and Sahara, M. (1996). Intra-and interbreed genetic variations of mitochondrial DNA major non-coding regions in Japanese native dog breeds (Canis familiaris). Anim. Genet. 27:397.

    Google Scholar 

  • Saitou, and Nei, M. (1987). The neighbor-joining method: A new method for reconstructing phylogenetic trees. J. Mol. Evol. 4:406.

    Google Scholar 

  • Smith, M. F., and Patton, J. L. (1991). Variation in mitochondrial cytochrome b sequence in natural populations of South American Akodontine Rodents (Muridae: Sigmodontinae). Mol. Biol. Evol. 8(1):85.

    Google Scholar 

  • Swofford, D. L. (1991). Phylogenetic Analysis Using Parsimony (PAUP), Version 3.0s, Illinois Natural Histories survey, Champaign.

    Google Scholar 

  • Wall, D. A., Davis, S. K., and Read, B. M. (1992). Phylogenetic relationships in the subfamily Bovinae (mammalia: artiodactyla) based on ribosomal DNA. J. Mamm. 73(2):262.

    Google Scholar 

  • Wenink, P. W., Baker, A. J., and Tilanus, G. J. (1993). Hypervariable-control-region sequences reveal global population structuring in a long-distance migrant shorebird, the Dunlin (Calidris alpina). Proc. Natl. Acad. Sci. USA 90:94.

    Google Scholar 

  • Yonekawa, H., Takahama, S., Gotoh, O., Miyashita, N., and Moriwaki, K. (1994). Genetic diversity and geographic distribution of Mus musculus subspecies based on the polymorphism of mitochondrial DNA. Genetics in Wild Mice, Japan Scientific Societies Press and Kargen, p. 25.

  • Zeuner, F. E. (1963). A History of Domesticated Animals, Hutchinson, London.

    Google Scholar 

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Takada, T., Kikkawa, Y., Yonekawa, H. et al. Bezoar (Capra aegagrus) Is a Matriarchal Candidate for Ancestor of Domestic Goat (Capra hircus): Evidence from the Mitochondrial DNA Diversity. Biochem Genet 35, 315–326 (1997). https://doi.org/10.1023/A:1021869704889

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  • DOI: https://doi.org/10.1023/A:1021869704889

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