Literature DB >> 8884264

ZOO-FISH suggests a complete homology between human and capuchin monkey (Platyrrhini) euchromatin.

F Richard1, M Lombard, B Dutrillaux.   

Abstract

Chromosome comparisons using in situ hybridization of all human chromosome-specific libraries on Capuchin monkey (Cebus capucinus, Cebidae, Platyrrhini) metaphases were performed with a new technique simultaneously revealing a G-banding and chromosome "painting." A complete homology between human (HSA) and C. capucinus (CCA) chromosomes was demonstrated, except for constitutive heterochromatin. Eleven C. capucinus chromosomes are homologous to 11 human chromosomes: CCA 2 = HSA 4; CCA 3 = HSA 6; CCA 12 = HSA 9; CCA 16 = HSA 11; CCA 10 = HSA 12; CCA 11 = HSA 13; CCA 20 = HSA 17; CCA 8 = HSA 19; CCA 23 = HSA 20; CCA 24 = HSA 22; and CCA X = HSA X. Ten C. capucinus chromosomes are homologous to parts of human chromosomes: CCA 13 = HSA 8q; CCA 14 = HSA 2q; CCA 15 = HSA 1p + 1q proximal; CCA 17 = HSA 7 part; CCA 18 and 19 = HSA 3 part; CCA 21 and 22 = HSA 1q distal; CCA 25 = HSA 10p; and CCA 26 = HSA 15q part. Six C. capucinus chromosomes are homologous to parts of two human chromosomes: CCA 1 = HSA 5 + 7 part; CCA 4 = HSA 2p + q proximal + 16q; CCA 5 = HSA 10q + 16p; CCA 6 = HSA 14 + 15 part; CCA 7 = HSA 8p + 18; and CCA 9 = HSA 3 part + 21. Many previous banding comparisons were confirmed but several cryptic or complex rearrangements could be identified. With the C. capucinus karyotype having been shown to be fairly ancestral, this comparison opens the possibility to compare human chromosomes to most Cebidae species.

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Year:  1996        PMID: 8884264     DOI: 10.1006/geno.1996.0486

Source DB:  PubMed          Journal:  Genomics        ISSN: 0888-7543            Impact factor:   5.736


  21 in total

1.  Segmental duplications in euchromatic regions of human chromosome 5: a source of evolutionary instability and transcriptional innovation.

Authors:  Anouk Courseaux; Florence Richard; Josiane Grosgeorge; Christine Ortola; Agnes Viale; Claude Turc-Carel; Bernard Dutrillaux; Patrick Gaudray; Jean-Louis Nahon
Journal:  Genome Res       Date:  2003-03       Impact factor: 9.043

2.  Synteny of human chromosomes 14 and 15 in the platyrrhines (Primates, Platyrrhini).

Authors:  Cristiani Gifalli-Iughetti; Célia P Koiffmann
Journal:  Genet Mol Biol       Date:  2009-12-01       Impact factor: 1.771

3.  Reciprocal chromosome painting between a New World primate, the woolly monkey, and humans.

Authors:  R Stanyon; S Consigliere; F Bigoni; M Ferguson-Smith; P C O'Brien; J Wienberg
Journal:  Chromosome Res       Date:  2001       Impact factor: 5.239

4.  Analysis of the heterochromatin of Cebus (Primates, Platyrrhini) by micro-FISH and banding pattern comparisons.

Authors:  Mariela Nieves; Edivaldo H C De Oliveira; Paulo J S Amaral; Cleusa Y Nagamachi; Julio C Pieczarka; María C Mühlmann; Marta D Mudry
Journal:  J Genet       Date:  2011-04       Impact factor: 1.166

5.  Molecular cytogenetic dissection of human chromosomes 3 and 21 evolution.

Authors:  S Müller; R Stanyon; P Finelli; N Archidiacono; J Wienberg
Journal:  Proc Natl Acad Sci U S A       Date:  2000-01-04       Impact factor: 11.205

6.  The phylogeny of howler monkeys (Alouatta, Platyrrhini): reconstruction by multicolor cross-species chromosome painting.

Authors:  Edivaldo H C de Oliveira; Michaela Neusser; Wilsea B Figueiredo; Cleusa Nagamachi; Julio Cesar Pieczarka; Ives J Sbalqueiro; Johannes Wienberg; Stefan Müller
Journal:  Chromosome Res       Date:  2002       Impact factor: 5.239

7.  Phylogenomics of African guenons.

Authors:  Sibyle Moulin; Michèle Gerbault-Seureau; Bernard Dutrillaux; Florence Anne Richard
Journal:  Chromosome Res       Date:  2008-07-13       Impact factor: 5.239

Review 8.  Primate chromosome evolution: ancestral karyotypes, marker order and neocentromeres.

Authors:  R Stanyon; M Rocchi; O Capozzi; R Roberto; D Misceo; M Ventura; M F Cardone; F Bigoni; N Archidiacono
Journal:  Chromosome Res       Date:  2008       Impact factor: 5.239

9.  Patterns of chromosomal evolution in Sigmodon, evidence from whole chromosome paints.

Authors:  V J Swier; R D Bradley; W Rens; F F B Elder; R J Baker
Journal:  Cytogenet Genome Res       Date:  2009-07-14       Impact factor: 1.636

10.  Origin of human chromosome 21 and its consequences: a 50-million-year-old story.

Authors:  F Richard; B Dutrillaux
Journal:  Chromosome Res       Date:  1998-06       Impact factor: 5.239

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