246
References
H– 36 Harvey, S.C., Campos-Ramos, R., Kennedy, D.D., Ezaz, M.T., Bromage, N.R., Griffin, D.K.
fi
and Penman, D.J. (2002) Karyotype evolution in Tilapia: mitotic and meiotic chromosome analysis of Oreochromis karongae and O. niloticus × O. karongae hybrids. Genetica, 115: 169–177.
H– 37 Hinegardner, R. (1976) The cellular DNA content of sharks, rays and some other fishes.
fi
Comp. Biochem. Physiol., 55B: 367–370.
H– 38 Hattori, R.S., Daniel-Silva, M.F.Z. and Almeida-Toledo, L.F. (2007) Karyotype characterization and gene mapping of 5S and 18S rDNA in three species of Oligosarcus (Teleostei:
Characidae). Caryologia, 60: 372–378.
H– 39 Hinegardner, R. (1968) Evolution of cellular DNA content in teleost fishes. Amer. Natur.,
fi
102: 517–523.
H– 40 Hardie, D.C. and Hebert, P.D.N. (2004) Genome-size evolution in fishes. Can. J. Fish. Aquat.
fi
Sci., 61: 1636–1646, table D1.
H– 41 Hardie, D.C. and Hebert, P.D.N. (2003) The nucleotypic effects of cellular DNA content
in cartilaginous and ray-finned fi
fi
shes. Genome, 46: 683–706.
fi
H– 42 Hashimoto, D.T., Laudicina, A., Bortolozzi, J., Foresti, F. and Porto-Foresti, F. (2009)
Chromosomal features of nucleolar dominance in hybrids between the Neotropical fish fi
Leporinus macrocephalus and Leporinus elongatus (Characiformes, Anostomidae).
Genetica, 137: 135–140.
*H– 43 Hernandez, A. and Garcia, G. (1994) Estudio citogenetico en Cynolebias cheradophilus
(Cyprinodontiformes, Rivulidae). V. Simp. Citogenet. Evol. E Aplic. De Peixes Neotropicais, Botucatu, SP, p. 22 (abstract). (After K-114)
*H– 44 Haimovici, S. and Ciuca, L. (1973) Observations concemant les chromosomes chez Eudontomyzon mariae (Berg, 1931) (Cyclostomata, Petromyzonidae). Ann. Sti. Univ. Jasi. Sec.
2, 19: 345–348. (After K-114)
*H– 45 Hudson, R.G. (1976) A comparison of karyotypes and erythrocyte DNA quantities
in several species of catfish (Siluriformes) with phylogenetic implications. Unpufi
blished Ph D. Dissertation, North Carolina State University, Raleigh. (After K114)
[I]
I– 1 Ida, H., Murofushi, M., Fujiwara, S. and Fujino, K. (1978) Preparation of fish chromofi
somes by in vitro colchicine treatment. Japan. J. Ichthyol., 24: 281–284.
I– 2 Ida, H. and Yunokawa, K. (1980) Karyotypic variation found among five species of the
fi
family Platycephalidae. Japan. J. Ichthyol., 27: 122–128.
I– 3 Ida, H. (1981) Karyotypes of elasmobranchs. Mar. Sci. Monthly, 13(1): 52–58. (In
Japanese)
I– 4 Ida, H., Iwasawa, T. and Kamitori, M. (1982) Karyotypes in eight species of Sebastes
f
from
Japan. Japan. J. Ichthyol., 29: 162–168.
I– 5 Ida, H., Sato, I. and Miyawaki, N. (1985) Karyotypes of two species in the order Torpediniformes. Japan. J. Ichthyol., 32: 107–111.
I– 6 Ida, H., Asahida, T., Yano, K. and Tanaka, S. (1986) Karyotypes of two sharks, Chlamydoselachus anguineus and Heterodontus japonicus, and their systematic implications.
In: Uyeno, T., Arai, R., Taniuchi, T. and Matsuura, K. eds. Indo-Pacific fi
fi sh biology.
fi
Ichthyological Society of Japan, Tokyo, pp. 158–163.
I– 7 Ida, H., Terashima, H. and Fujimi, T. (1989) Karyotypes in four species of the family
Cottidae. Japan. J. Ichthyol., 36: 135–140.
I– 8 Ida, H., Oka, N. and Hayashizaki, K. (1991) Karyotypes and cellular DNA contents of
three species of the subfamily Clupeinae. Japan. J. Ichthyol., 38: 289–294.
I– 9 Ida, H., Oka, N., Terashima, H. and Hayashizaki, K. (1993) Karyotypes and cellular DNA
contents of three species of the family Scombridae from Japan. Bull. Japan. Soc. Sci.
Fish., 59: 1319–1323.
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