Some certainties among the Manyquestions of the last 10 years about the primate genome

In 2000 the first draft of the human genome, what became known as our book of life, was presented. It generated high expectations for its potential applications to the benefit of the biological sciences. What happened 10 years later? We know how many genes we have in our genome and analyzed the func...

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Autor principal: Nieves, M.
Otros Autores: Mudry, M.D
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Publicado: 2011
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100 1 |a Nieves, M. 
245 1 0 |a Some certainties among the Manyquestions of the last 10 years about the primate genome 
246 3 1 |a Algunas certezas entre las tantas preguntas de los últimos diez años acerca del genoma de los primates 
260 |c 2011 
270 1 0 |m Nieves, M.; CONICET and GIBE (Grupo de Investigación en Biología Evolutiva), Departamento de Ecología, Genética y Evolución (EGE), Facultad de Ciencias Exactas y Naturales (FCEyN), Universidad de Buenos Aires (UBA), Buenos Aires, Argentina; email: mnieves@ege.fcen.uba.ar 
506 |2 openaire  |e Política editorial 
504 |a Ascunce, M.S., Hasson, E., Mudry, M.D., COII: A Useful Tool for Inferring Phylogenetic Relationships Among New World Monkeys (Primates, Platyrrhini) (2003) Zool SCR, 32 (5), pp. 397-406 
504 |a Borrell, A., Ponsà, M., Egozcue, J., Rubio, A., García, M., Chromosome Abnormalities in Peripheral Blood lymphocytes from Macaca fascicularis and Erythrocebus patas (Cercopithecidae, Catarrhini) after X-ray Irradiation (1998) Mutat Res-Fund Mol M, 403 (1-2), pp. 185-198 
504 |a Canavez, F.C., Moreira, M.A., Bonvicino, C.R., Parham, P.R., Seuánez, H.R., Evolutionary Disruptions of Human Syntenic Groups 3, 12, 14, and 15 in Ateles paniscus chamek (Platyrrhini, primates) (1999) Cytogenet Cell Genet, 87 (3-4), pp. 182-188 
504 |a Clemente, I.C., Ponsà, M., García, M., Egozcue, J., Evolution of the Simiiformes and the Phylogeny of Human Chromosomes (1990) Hum Genet, 84, pp. 493-506 
504 |a von Dornum, M., Ruvolo, M., Phylogenetic Relationships of the New World Monkeys (Primates, Platyrrhini) Based on Nuclear G6PD DNA Sequences (1999) Mol Phylogenet Evol, 11 (3), pp. 459-476 
504 |a Dumas, L., Young, H.K., Karimpour-Fard, A., Cox, M., Hopkins, J., Pollack, J.R., Gene Copy Number Variation Spanning 60 Million Years of Human and Primate Evolution (2007) Genome, 17, pp. 1266-1277 
504 |a Dutrillaux, B., Rethoré, M.O., Lejeune, J., Analyse du caryotype dePan paniscus. Comparaison avec les autresPongidae etl'Homme (1975) Hum Genet, 28 (2), pp. 113-119 
504 |a Dutrillaux, B., Couturier, J., The Ancestral Karyotype of Platyrrhine Monkeys (1981) Cytogenet Genome Res, 30 (4), pp. 232-242 
504 |a Dutrillaux, B., Couturier, J., Viegas-Péquignot, E., Evolution chromosomique des Platyrrhiniens (1986) Mammalia, 50, pp. 56-81 
504 |a Egozcue, J., Caballín, M.R., Goday, C., Banding Patterns of the Chromosomes of Man and the Chimpanzee (1973) Hum Genet, 18 (1), pp. 77-80 
504 |a Eissenberg, J.C., James, T.C., Foster-Hartnett, D.M., Hartnett, A., Ngan, V., Elgin, S.C., Mutation in a Heterochromatin-Specific Chromosomal Protein is Associated with Suppression of Position-Effect Variegation in Drosophila melanogaster (1990) Proc Natl Acad Sci U S A, 87 (24), pp. 9923-9927 
504 |a Fleagle, J.G., (1999) Primate Adaptation and Evolution, , Academic Press 
504 |a García, F., Nogués, C., García, M., Egozcue, J., Ponsà, M., Characterization of Constitutive Heterochromatin in Cebus apella (Cebidae, Primates) and Pan troglodytes (Hominidae, Primates): Comparison to human chromosomes (1999) Am J Primatol, 49 (3), pp. 205-221 
504 |a García, F., Ruiz-Herrera, A., Egozcue, J., Ponsà, M., Garcia, M., Chromosomal Homologies between Cebus and Ateles (Primates) Based on ZOO-FISH and G-banding Comparisons (2002) Am J Primatol, 57 (4), pp. 177-188 
504 |a Gregory, T.R., Animal Genome Size Database 2011 Disponible en: URL: Http://www.genomesize.com. DE GROUCHY J, TURLEAU C, ROUBIN M, KLEIN M. Karyotypic Evolution in Man and Chimpanzees. A Comparative Study of Band Topographies After Controlled Denaturation (1972) Ann Gennet-Paris, 15 (2), pp. 79-84 
504 |a Hanash, S., Disease Proteomics (2003) Nature, 422 (6928), pp. 226-232 
504 |a James, T.C., Elgin, S.C., Identification of a Nonhistone Chromosomal Protein Associated with Heterochromatin in Drosophila melanogaster and its Gene (1986) Mol Cell Biol, 6 (11), pp. 3862-3872 
504 |a Kluge, A.G., A Concern for Evidence and a Phylogenetic Hypothesis of Relationships Among Epicrates (Boidae, Serpentes) (1989) Syst Zool, 38 (1), pp. 7-25 
504 |a Kwon, S.H., Workman, J.L., The Heterochromatin Protein 1 (HP1) Family: Put Away a Bias Toward HP1 (2008) Mol Cells, 26 (3), pp. 217-227 
504 |a Lander, E.S., Linton, L.M., Birren, B., Nusbaum, C., Zody, M.C., Baldwin, J., Initial Sequencing and Analysis of the Human Genome (2001) Nature, 409 (6822), pp. 860-921 
504 |a Lomberk, G., Wallrath, L., Urrutia, R., The Heterochromatin Protein 1 Family (2006) Genome Biol, 7 (7), p. 228 
504 |a King, M., Chromosomal Rearrangements, Speciation and the Theoretical Approach (1987) Heredity, 59, pp. 1-6 
504 |a Mudry, M.D., Martinez, R.A., Nieves, M., Carballo, M.A., Biomarkers of Genotoxicity and Genomic Instability in a Non-human Primate, Cebus libidinosus (Cebidae, Platyrrhini), Exposed to Nitroimidazole Derivatives (2011) Mutat Res-Gen Tox En, 721 (1), pp. 108-113 
504 |a Nieves, M., Mühlmann, M., Mudry, M.D., Cebus paraguayanus and Cebus nigritus (Primates, Platyrrhini): A Comparative Genomic Hybridization Analysis (2010) Cytogenet Genome Res, 128 (4), pp. 214-220 
504 |a Nieves, M., Mühlmann, M., Mudry, M.D., Heterochromatin and Chromosome Evolution: A FISH Probe of Cebus apella paraguayanus (Primate: Platyrrhini) Developed by Chromosome Microdissection (2005) Genet Mol Res, 4 (4), pp. 675-683 
504 |a Nieves, M., Mudry, M.D., (2009) Genomas y cromosomas: Estudio evolutivo de Hominoidea y Ceboidea, , 9. as Jornadas Nacionales de Antropología Biológica, Puerto Madryn, Chubut, Argentina. Octubre de. Disertante en simposio avances y proyecciones de la primatología argentina 
504 |a Ohno, S., (1970) Evolution by Gene Duplication, , Springer-Verlag 
504 |a Ortiz, M.E., Ortiz, R.E., Fuentes, M.A., Parraguez, V.H., Croxatto, H.B., Postcoital Administration of Levonorgestrel does not Interfere with Post-fertilization Events in the New-world Monkey Cebus apella (2004) Hum Reprod, 19 (6), pp. 1352-1356 
504 |a Pollard, K.S., What Makes us Human? (2009) Sci Am, 300 (5), pp. 44-49 
504 |a Richard, F., Lombard, M., Dutrillaux, B., ZOO-FISH Suggests a Complete Homology between Human and Capuchin Monkey (Platyrrhini) Euchromatin (1996) Genomics, 36 (3), pp. 417-423 
504 |a Ruiz-Garcia, M., Escobar-Armel, P., Alvarez, D., Mudry, M., Ascunce, M., Gutierrez-Espeleta, G., Genetic Variability in Four Alouatta Species Measured by Means of Nine DNA Microsatellite Markers: Genetic Structure and Recent Bottlenecks (2007) Folia Primatol./Intl J Primatol, 78 (2), pp. 73-87 
504 |a Schneider, H., Schneider, M.P., Sampaio, M.I., Montoya, E., Tapia, J., Encarnación, F., Divergence Between Biochemical and Cytogenetic Differences in Three Species of the Callicebus moloch Group (1993) Am J Phys Anthropol, 90 (3), pp. 345-350 
504 |a Seuánez, H.N., Bonvicino, C.R., Moreira, M.A.M., The Primates of the Neotropics: Genomes and Chromosomes (2005) Cytogenet Genome Res, 108 (1-3), pp. 38-46 
504 |a Stanyon, R., Rocchi, M., Capozzi, C., Roberto, R., Misceo, D., Ventura, M., Primate Chromosome Evolution: Ancestral Karyotypes, Marker Order and Neocentromeres (2008) Chromosome Res, 16 (1), pp. 17-39 
504 |a Tjio, J.H., Levan, A., The Chromosome Number of Man (1956) Hereditas, 42 (1-2), pp. 1-6 
504 |a Toder, R., Xia, Y., Bausch, E., Interspecies Comparative Genome Hybridization and Interspecies Representational Difference Analysis Reveal Gross DNA Differences Between Humans and Great Apes (1998) Chromosome Res, 6 (6), pp. 487-494 
504 |a Venter, J.C., Adams, M.D., Muers, E.W., Li, P.W., Mural, R.J., Sutton, G.G., The Sequence of the Human Genome (2001) Science, 291 (5507), pp. 1304-1351 
504 |a Visalberghi, E., Success and Understanding in Cognitive Tasks: A Comparison Between Cebus apella and Pan troglodytes (1997) Intl J Primatol, 18 (5), pp. 811-830 
504 |a Wilson, G.M., Flibotte, S., Missirlis, P.I., Marra, M.A., Jones, S., Thornton, K., Identification by Full-coverage array CGH of Human DNA Copy Number Increases Relative to Chimpanzee and Gorilla (2006) Genome Res, 16 (2), pp. 173-181 
504 |a Young, W.J., Merz, T., Ferguson-Smith, M.A., Johnston, A.W., Chromosome Number of the Chimpanzee, Pan troglodytes (1960) Science, 131 (3414), pp. 1672-1673 
520 3 |a In 2000 the first draft of the human genome, what became known as our book of life, was presented. It generated high expectations for its potential applications to the benefit of the biological sciences. What happened 10 years later? We know how many genes we have in our genome and analyzed the function of some of them. Nowadays, we know the sequences of 3 mammalians genomes: M. musculus, P. troglodytesy S. scrofa and the genomes or borradores from other eucaryotes (other animals, plants, fungi and protists) and procaryotes (Archea and Bacterias). However, the study of the genome is not merely a description of the sequences that compose it. The answers provided will have very different approaches from evolution and conservation of biodiversity to gene therapy and malignant transformation, where the study of individual and population particularities requires sources of information both past and present on these genomes under survey. Thus, advances in science are always provisional and therefore liable to be continued, completed and even reinterpreted as we advance in knowledge, new questions arise.  |l eng 
593 |a CONICET and GIBE (Grupo de Investigación en Biología Evolutiva), Departamento de Ecología, Genética y Evolución (EGE), Facultad de Ciencias Exactas y Naturales (FCEyN), Universidad de Buenos Aires (UBA), Buenos Aires, Argentina 
690 1 0 |a CHROMOSOMES AND HETEROCHROMATIN 
690 1 0 |a GENOME DYNAMICS 
690 1 0 |a ANIMALIA 
690 1 0 |a EUKARYOTA 
690 1 0 |a FUNGI 
690 1 0 |a MAMMALIA 
690 1 0 |a MUS MUSCULUS 
690 1 0 |a PROKARYOTA 
690 1 0 |a PROTISTA 
690 1 0 |a SUS SCROFA 
650 1 7 |2 spines  |a PRIMATES 
650 1 7 |2 spines  |a PRIMATES 
700 1 |a Mudry, M.D. 
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