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Forrest, D., M. Sjoberg and B. Vennstrom. 1990. Contrasting developmental and tissue-
specifi c expression of α and β thyroid hormone receptor genes. The EMBO Journal 9:
1519-1528.
Forrest, D., F. Hallbook, H. Persson and B. Vennstrom. 1991. Distinct functions for thyroid
hormone receptors α and β in brain development indicated by differential expression of
receptor genes. The EMBO Journal 10: 269-275.
Fraser, R.C. 1963. Cytochemistry of the developing chick embryo erythrocytes. Journal of
Experimental Zoology 152: 297-305.
Frieden, E. and B. Naile. 1955. Biochemistry of amphibian metamorphosis. I. Enhancement
of induced metamorphosis by glucocorticoids. Science 121: 37-39.
Fujii, R. 1969. Chromatophores and pigments. In: Fish Physiology Vol.III, W.S. Hoar and D.
J. Randall (Eds.). Academic Press, pp. 307-353.
Fujii, 1993. Cytophysiology of fi sh chromaophores. International Review of Cytology 143:
191-255.
Fujii, R., and Ohshima, N. 1986. Control of chromatophore movements in teleost fi shes,
Zoological Science 3: 13-47.
Fukuhara, O. 1986. Morphological and functional development of Japanese fl ounder in early
life stage. Nippon Suisan Gakkaishi 52: 81-91.
Furihata, C., T. Kawachi and T. Sugimura. 1972. Premature induction of pepsinogen in
developing rat gastric mucosa by hormones. Biochemical and Biophysical Research
Communications 47: 705-711.
Galton, V.A., C.D. Jennifer and M.J. Schneider. 1994. Mechanisms of thyroid hormone action
in developing Rana catesbeiana tadpoles. In: Perspectives in Comparative Endocrinology.
K. Davey, R.E. Peter and S.S. Tobe (Eds.). National Research Council of Canada, Otawa,
Ontario, pp. 412-415.
Gilbert, L.I. and E. Frieden. 1981. Metamorphosis: A Problem in Developmental Biology.
Plenum Press, New York, 578pp.
Glass, C.K., R. Franco, C. Weinberger, V.R. Albert, R.M. Evans and M.G. Rosenfeld. 1987. A
c-erb-A binding site in rat growth hormone gene mediates trans-activation by thyroid
hormone. Nature 329: 738-741.
Govoni, J.J., G.W. Boehlert and Y. Watanabe. 1986. The physiology of digestion in fi sh larvae.
Environmental Biology of Fishes 16: 59-77.
Hamada, H., C. Meno, D. Watanabe and Y. Saijoh. 2002. Establishment of vertebrate left-right
asymmetry. Nature Reviews Genetics 3: 103-113.
Hashimoto, H., A. Mizuta, N. Okada, T. Suzuki, M. Tagawa, K. Tabata, Y. Yokoyama, M.
Sakaguchi, M. Tanaka and H. Toyohara. 2002. Isolation and characterization of a
Japanese fl ounder clonal line, reversed, which exhibits reversal of metamorphic left-right
asymmetry. Mechanisms of Development 111: 17-24.
Hashimoto, H., M. Rebagliati, N. Ahmad, O. Muraoka, T. Kurokawa, M. Hibi and T. Suzuki,
2004. The Cerberus/Dan-family protein charon is a negative regulator of nodal signaling
during left-right patterning in zebrafi sh. Development 131: 1741-1753.
Hashimoto, H., M. Aritaki, K. Uozumi, S. Uji, T. Kurokawa and T. Suzuki. 2007. Embryogenesis
and expression profi les of charon and nodal-pathway genes in sinistral ( Paralichthys
olivaceeus ) and dextral ( Verasper varigatus ) fl ounders. Zoological Science 24: 137-146.
Helander, H.F. 1969. Ultrastructure and function of gastric mucoid and zymogen cells in the
rat during development. Gastroenterology, 56: 53-70.
Heyman, R.M., D.J. Mangelsdorf, J.A. Dyck, R.B. Stein, G. Eichele, R.M. Evans and
C. Thaller. 1992. 9-cis retinoic acid is a high affi nity ligand for the retinoid X receptor.
Cell 68: 397-406.
Hiroi, J., Y. Sakakura, M. Tagawa, T. Seikai and M. Tanaka. 1997. Developmental changes in
low-salinity tolerance and responses of prolactin, cortisol and thyroid hormones to low-
salinity environment in larvae and juveniles of Japanese fl ounder, Paralichthys olivaceus .
Zoological Science 14: 987-992.
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