Tabata, K., Kishioka, H., Takagi, M., Mizuta, A., & Taniguchi, N. (1997). Genetic Diversity of
Five Strains of Red Sea Bream Pagrus major by RFLP Analysis of the mtDNA D-loop Region.
Fisheries science, 63(3), 344–348.
Takagi, M., et al. (1993). DNA fingerprints of chromosome manipulation ayu. Fish Breeding, 19,
45–53.
Takagi, M., Taniguchi, N., Yamasaki, M., & Tsujimura, A. (1995). Identification of Clones
Induced by Chromosome Manipulation in Ayu Plecoglossus altivelis by DNA Fingerprinting
with RI and Non-RI Labelled Probes. Fisheries science, 61(6), 909–914.
Takagi, M., Taniguchi, N., Cook, D., & Doyle, R. W. (1997). Isolation and Characterization of
Microsatellite Loci from Red Sea Bream Pagrus major and Detection in Closely Related
Species. Fisheries science, 63(2), 199–204.
Taniguchi, N. (1996). Analysis of the Fish Genome and Its Necessity. G-C Mapping of
Chromosome Manipulated Fish Using Hyper-Variable DNA Markers. Nippon Suisan
Gakkaishi, 62(4), 685–686.
Taniguchi, N. (2000). Genetic diversity of fishes and DNA markers. In F. Takashita (Ed.), The next
generation offisheries biotechnology (pp. 43–53). Tokyo, Japan: Seizando-shoten publishing Co.
Taniguchi, N., & Takagi, M., (1997). Diversity analysis of DNA Polymorphism and fish
population. In T. Aoki, F. Takashima & T. Hirano (Eds.), DNA of fish (pp. 117–137). Tokyo,
Japan: Seizando-Shoten Publishing Co.
Taniguchi, N. Takagi, M. & Matsumoto, S. (1997). Genetic evaluation of quantitative traits of
hatchery stocks for aquaculture in red sea bream. Bulletin National Research Institute of
Aquaculture Supplement 3, 35–41.
Taniguchi, N., Yamasaki, M., Takagi, M., & Tsujimura, A. (1996). Genetic and environmental
variances of body size and morphological traits in communally reared clonal lines from
gynogenetic diploid ayu, Plecoglossus altivelis. Aquaculture, 140(4), 333–341.
Tingey, S. V., & del Tufo, J. P. (1993). Genetic analysis with random amplified polymorphic DNA
markers. Plant Physiology, 101(2), 349.
Toledo, Á., & Burlingame, B. (2006). Biodiversity and nutrition: A common path toward global
food security and sustainable development. Journal of Food Composition and Analysis, 19(6–
7), 477–483.
Vassart, G., Georges, M., Monsieur, R., Brocas, H., Lequarre, A., & Christophe, D. (1987).
A sequence in M13 phage detects hypervariable minisatellites in human and animal DNA.
Science, 235(4789), 683–684.
Vos, P., Hogers, R., Bleeker, M., Reijans, M., Lee, T. v. d., Hornes, M., et al. (1995). AFLP: A
new technique for DNA fingerprinting. Nucleic Acids Research, 23(21), 4407–4414.
Williams, J. G., Kubelik, A. R., Livak, K. J., Rafalski, J. A., & Tingey, S. V. (1990). DNA
polymorphisms amplified by arbitrary primers are useful as genetic markers. Nucleic Acids
Research, 18(22), 6531–6535.
Williams, J. G., Hanafey, M. K., Rafalski, J. A., & Tingey, S. V. (1995). Genetic analysis using
random amplified polymorphic DNA markers. In Recombinant DNA Methodology II (pp. 849–
884). Elsevier.
Wirgin, I. I., & Maceda, L. (1991). Development and use of striped bass-specific RFLP probes.
Journal of Fish Biology 39, 159–167.
Xu, Y., & Crouch, J. H. (2008). Marker-assisted selection in plant breeding: From publications to
practice. Crop Science, 48(2), 391–407.
Zhang J., Talbot, W. S., & Schier, A. F. (1998). Positional cloning identifies zebrafish one-eyed
pinhead as a permissive EGF-related ligand required during gastrulation. Cell, 92, 241–251.
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