Cytogenetics and karyosystematics of phyllotine rodents (Cricetidae, Sigmodontinae) I. Chromosome multiformity and gonosomal-autosomal translocation in Reithrodon

The chromosomes of 14 specimens of the genus Reithrodon from three different localities of Argentina and two localities of Uruguay were studied using G-and C-banding techniques. Specimens of Uruguay showed a karyotype of 2n=28 chromosomes having a large metacentric X, and a telocentric Y chromosome....

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Autor principal: Ortells, M.O
Otros Autores: Reig, O.A, Brum-Zorrilla, N., Scaglia, O.A
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Lenguaje:Inglés
Publicado: Kluwer Academic Publishers 1988
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100 1 |a Ortells, M.O. 
245 1 0 |a Cytogenetics and karyosystematics of phyllotine rodents (Cricetidae, Sigmodontinae) I. Chromosome multiformity and gonosomal-autosomal translocation in Reithrodon 
260 |b Kluwer Academic Publishers  |c 1988 
270 1 0 |m Ortells, M.O.; G.I.B.E., Departamento de Ciencias Biologicas, FCEyN, Universidad de Buenos Aires, Pabellon II, Cuarto Piso, Ciudad Universitaria Nuñez, Buenos Aires, 1428, Argentina 
506 |2 openaire  |e Política editorial 
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504 |a Capanna, E., Gropp, H., Winking, H., Noack, G., Civitclli, M.C., Robertsonian metacentrics in the mouse (1976) Chromosoma, 58, pp. 341-353 
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504 |a Freitas, T.R.O., Mattevi, M., Oliveira, L.F.B., G-and C-banded karyotype of Reithrodon auritus from Brazil (1983) Journal of Mammalogy, 64, pp. 318-321 
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504 |a Gropp, A., Winking, H., Redi, C., Consequences of Robertsonian heterozygosity: segregational impairment or fertility versus male-limited sterility (1982) Genetic control of gamete production and function, pp. 114-134. , P. G., Crossignani, S., Rubin, Academic Press, New York 
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504 |a Huang, C.C., Strong, L.C., Chromosomes of the African mouse (1962) J. Hered., 53, pp. 95-99 
504 |a Jotterand-Bellomo, M., L'analyse cytogénétique de deux espèces de Muridae africains, Mus minutoides/musculoides: polymorphisme chromosomique et ébauche d'une phylogénie (1986) Cytogenet. Cell Genet., 38, pp. 182-188 
504 |a Jotterand-Bellomo, M., Le genre Mus africain, un exemple d'homogénétié caryotypique: étude cytogénétique de Mus minutoides/musculoides (Côte d'lvoire), de M. setulosus (République Centrafricaine), et de M. mattheyi (Burkina Faso) (1986) Cytogenet. Cell Genet., 42, pp. 99-104 
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504 |a Levan, A., Fredga, K., Sandberg, A., Nomenclature for the centromeric position on chromosomes (1964) Hereditas, 52, pp. 201-220 
504 |a Lewis, K.R., John, B., (1963) Chromosome marker, , J. & A. Churchill, Ltd., London 
504 |a Matthey, R., Polymorphismo chromosomique intraspecifique chez un Mammifère Leggada minutoides Smith (Rodentia, Muridae) (1963) Rev. suisse Zool., 70, pp. 173-190 
504 |a Matthey, R., Un type nouveau de chromosomes sexuels multiples chez une souris africaine du group Mus (Leggada) minutoides (Mammalia, Rodentia). Male X<inf>1</inf>X<inf>2</inf>/Y. Femelle X<inf>1</inf>X<inf>2</inf>/X<inf>1</inf>X<inf>2</inf> (1965) Chromosoma, 16, pp. 351-364 
504 |a Matthey, R., 1965b. Cytogenetic mechanisms and specification in mammals. In: G. Yerganian, ed. The chromosome. Structural and Functional Aspects. Publication of the Tissue Culture Assocation Inc.: 1–11; Matthey, R., Le polymorphisme chromosomique des Mus africains du sous-genre Leggada. Revision gereral portant sur l'analyse de 213 individues (1966) Rev. suisse Zool., 73, pp. 585-607 
504 |a Ohno, S., Beçak, W., Beçak, M.L., X-autosome ratio and the behaviour pattern of individual X-chromosomes in placental mammals (1966) Chromosoma, 15, pp. 14-80 
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504 |a Pearson, O.P., Patton, J.L., Relationships among South American phyllotine rodents based on chromosome analysis (1976) Journal of Mammalogy, 57, pp. 339-350 
504 |a Ratomponirina, C., Viegas-Péquignot, E., Dutrillaux, B., Petter, F., Rumpler, Y., Synaptonemal complex in Gerbillidae: probable role of intercalated heterochromatin in gonosome-autosome translocations (1986) Cytogenet. Cell Genet., 43, pp. 161-167 
504 |a Reig, O.A., Roedores cricétidos del plioceno superior de la Provincia de Buenos Aires (Argentina) (1978) Publ. Mus. munic. Cienc. nat. Mar del Plata ‘Lorenzo Scaglia’, 2, pp. 164-190 
504 |a Reig, O.A., A new fossil genus of South American cricctid rodents allied to Wiedomys, with an assessment of the Sigmodontinae (1980) J. Zool., London, 192, pp. 257-281 
504 |a Reig, O.A., Distribucäo geografica e historia evolutiva dos roedores muroideos sulamericanos (Cricetidae: Sigmodontinae) (1984) Rev. brasileira Genet., 7, pp. 333-365 
504 |a Reig, O.A., Significado de los metodos citogeneticos para la distincion y la interpretación de las especies, con especial referencia a los mamiferos (1984) Rev. Mus. argent. Cienc. nat. ‘Bernardino Rivadavia’ Zool., 13 (3), pp. 19-44 
504 |a Reig, O.A., Olivo, N., Kiblisky, P., The idiogram of the Venezuelan vole mouse, Akodon urichi venezuelensis Allen (Rodentia, Cricctidae) (1971) Cytogenetics, 10, pp. 99-114 
504 |a Rovereto, C., Los estratos araucanos y sus fósiles (1914) Anal. Mus. nacion. Hist. nat. Buenos Aires, 25, pp. 1-247 
504 |a Sbalqueiro, I.J., Mattevi, M.S., Oliveira, L.F.B., An X<inf>1</inf>X<inf>1</inf>X<inf>2</inf>X<inf>2</inf>/X<inf>1</inf>X<inf>2</inf>Y mechanism of sex determination in a South American rodent, Deltamys kempi (Rodentia, Cricetidae) (1984) Cytogenet. Cell Genet., 38, pp. 50-55 
504 |a Scaglia, O.A., Velazquez, C.A., Cahuepc, M.A., Plant composition of coney rat's (Reithrodon auritus) diet (1982) Acta Theriologica, 27, pp. 350-353 
504 |a Seabright, M., A rapid banding technique for human chromosomes (1971) Lancet, 2, pp. 971-972 
504 |a Spirito, F., Modesti, A., Perticone, P., Cristaldi, M., Federici, F., Rizzoni, M., Mechanisms of fixation and accumulation of centric fusions in natural populations of Mus musculus I. I. Karyological analysis of hybrid zone between two populations in the central Apennines (1980) Evolution, 43, pp. 453-466 
504 |a Summer, A.T., A simple technique for demonstrated centromeric heterochromatin (1972) Experimental Cell Research, 75, pp. 304-306 
504 |a Tate, G.H.H., The taxonomic history of the genus Reithrodon Waterhouse (Cricetidae) (1933) Am. Mus. Novitates Nr., 529, pp. 1-4 
504 |a Utakoji, T., On the homology between the X and the Y chromosomes of the chinese hamster (1966) Chromosoma, 18, pp. 449-454 
504 |a Viegas-Péquignot, E., Benazzou, T., Dutrillaux, B., Petter, F., Complex evolution of sex chromosomes in Gerbillidae (Rodentia) (1982) Cytogenet. Cell Genet., 34, pp. 158-167 
504 |a Vorontzov, N.N., Sistema khomiakov (Cricetinae) mirovoi fauny i ikh filogeneticheskic sviazi (1959) Biul. Moskovs. Obshest. Ispitat. Prir., Otd. Biolog., 44 (5), pp. 134-137 
504 |a Vorontzov, N.N., The evolution of the sex chromosomes (1973) Cytotaxonomy and vertebrate evolution, pp. 619-657. , A. B., Chiarelli, E., Capanna, Academic Press, London and New York 
504 |a Wahrman, J., Richler, C., Neufeld, E., Friedmann, A., The origin of multiple sex chromosomes in the gerbil Gerbillus gerbillus (Rodentia, Gerbillidae) (1983) Cytogenet. Cell Genet., 35, pp. 161-180 
504 |a White, M.J.D., (1973) Animal cytology and evolution, , 3rd ed., Cambridge University Press, Cambridge 
520 3 |a The chromosomes of 14 specimens of the genus Reithrodon from three different localities of Argentina and two localities of Uruguay were studied using G-and C-banding techniques. Specimens of Uruguay showed a karyotype of 2n=28 chromosomes having a large metacentric X, and a telocentric Y chromosome. This karyotype is very similar to that recently described in a sample from southern Brazil, differing only in the nature of the Y chromosome, which is metacentric in the Brazilian form. All specimens from Argentina showed a 2n=34 karyotype, differing from the Brazilian karyotype by two centric fusions, an acquisition of chromosome material, and at least one pericentric inversion, and by the telocentric nature of both the X and the Y chromosomes. G-and C-banding suggest that the metacentric gonosomes in the Brazilian form resulted from a double autosomal-X-Y Robertsonian translocation. The Uruguayan cytotype is interpreted as derived from a hypothetical neo-X/Y1Y2 ancestral form by the secondary loss of the Y1 chromosome. The karyotypic differences between the Brazilian-Uruguayan and the Argentinian forms afford evidence of species differentiation. It is proposed to assign the former to Reithrodon typicus, and the later to R. auritus. © 1988 Kluwer Academic Publishers.  |l eng 
593 |a G.I.B.E., Departamento de Ciencias Biologicas, FCEyN, Universidad de Buenos Aires, Pabellon II, Cuarto Piso, Ciudad Universitaria Nuñez, Buenos Aires, 1428, Argentina 
593 |a Comision de Investigaciones Cientificas de la Provincia de Buenos Aires, Argentina 
593 |a National Research Council of Argentina (CONICET), Cordoba, Argentina 
593 |a Institute de Investigaciones Biologicas 'Clemente Estable', Avenida Italia 3318, Montevideo, Uruguay 
593 |a Museo Municipal de Ciencias Naturales 'Lorenzo Scaglia', Casillade Correo 1207, Mar del Plata, 7600, Argentina 
593 |a National Research Council of Argentina (CONICET), Cordoba, Argentina 
690 1 0 |a ANIMAL 
690 1 0 |a ARTICLE 
690 1 0 |a CHROMOSOME BANDING PATTERN 
690 1 0 |a CHROMOSOME TRANSLOCATION 
690 1 0 |a FEMALE 
690 1 0 |a GENETICS 
690 1 0 |a KARYOTYPING 
690 1 0 |a MALE 
690 1 0 |a MURIDAE 
690 1 0 |a SEX CHROMOSOME 
690 1 0 |a ANIMAL 
690 1 0 |a CHROMOSOME BANDING 
690 1 0 |a FEMALE 
690 1 0 |a KARYOTYPING 
690 1 0 |a MALE 
690 1 0 |a MICROTINAE 
690 1 0 |a SEX CHROMOSOMES 
690 1 0 |a SUPPORT, NON-U.S. GOV'T 
690 1 0 |a TRANSLOCATION (GENETICS) 
700 1 |a Reig, O.A. 
700 1 |a Brum-Zorrilla, N. 
700 1 |a Scaglia, O.A. 
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