Molecular cytogenetic dissection of human chromosomes 3 and 21 evolution
- 4 January 2000
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 97 (1) , 206-211
- https://doi.org/10.1073/pnas.97.1.206
Abstract
Chromosome painting in placental mammalians illustrates that genome evolution is marked by chromosomal synteny conservation and that the association of chromosomes 3 and 21 may be the largest widely conserved syntenic block known for mammals. We studied intrachromosomal rearrangements of the syntenic block 3/21 by using probes derived from chromosomal subregions with a resolution of up to 10–15 Mbp. We demonstrate that the rearrangements visualized by chromosome painting, mostly translocations, are only a fraction of the actual chromosomal changes that have occurred during evolution. The ancestral segment order for both primates and carnivores is still found in some species in both orders. From the ancestral primate/carnivore condition an inversion is needed to derive the pig homolog, and a fission of chromosome 21 and a pericentric inversion is needed to derive the Bornean orangutan condition. Two overlapping inversions in the chromosome 3 homolog then would lead to the chromosome form found in humans and African apes. This reconstruction of the origin of human chromosome 3 contrasts with the generally accepted scenario derived from chromosome banding in which it was proposed that only one pericentric inversion was needed. From the ancestral form for Old World primates (now found in the Bornean orangutan) a pericentric inversion and centromere shift leads to the chromosome ancestral for all Old World monkeys. Intrachromosomal rearrangements, as shown here, make up a set of potentially plentiful and informative markers that can be used for phylogenetic reconstruction and a more refined comparative mapping of the genome.Keywords
This publication has 45 references indexed in Scilit:
- ZOO-FISH analysis in insectivores: “Evolution extols the virtue of the status quo”Cytogenetic and Genome Research, 1998
- Conservation of human vs. feline genome organization revealed by reciprocal chromosome paintingCytogenetic and Genome Research, 1997
- ZOO-FISH Suggests a Complete Homology between Human and Capuchin Monkey (Platyrrhini) EuchromatinGenomics, 1996
- Integration of the Cytogenetic, Genetic, and Physical Maps of the Human Genome by FISH Mapping of CEPH YAC ClonesGenomics, 1996
- Genomic Reorganization in the Concolor Gibbon (Hylobates concolor) Revealed by Chromosome PaintingGenomics, 1995
- Genomic reorganization and disrupted chromosomal synteny in the siamang (Hylobates syndactylus) revealed by fluorescence in situ hybridizationAmerican Journal of Physical Anthropology, 1995
- A panel of subchromosomal painting libraries representing over 300 regions of the human genomeCytogenetic and Genome Research, 1995
- Comparative chromosome painting discloses homologous segments in distantly related mammalsNature Genetics, 1994
- Delineation of individual human chromosomes in metaphase and interphase cells by in situ suppression hybridization using recombinant DNA librariesHuman Genetics, 1988
- Detection of chromosome aberrations in metaphase and interphase tumor cells by in situ hybridization using chromosome-specific library probesHuman Genetics, 1988