We have used Alu polymerase chain reaction generated probes from rearranged human/rodent somatic cell hybrids for fluorescence in situ hybridization and comparative mapping of some intrachromosomal changes in the karyotypes of great apes (Pan troglodytes, P. paniscus, Gorilla gorilla, Pongo pygmaeus), a gibbon (Hylobates lar), and an Old World monkey (Macaca fuscata). Probes containing chromosomes 2 and 18 fragments confirmed inversions already suggested by the banding pattern of great ape homologues. However, a chromosome 3 fragment showed complex rearrangements in the gibbon and macaque karyotype which were previously not well defined from banding. 'Subchromosomal painting' will allow the identification of intrachromosomal changes on the ...
A new strategy for analyzing chromosomal evolu-tion in primates is presented using chromosomal in si...
We have generated a panel of 55 somatic cell hybrids retaining fragments of human chromosome 4. Each...
We used reciprocal chromosome painting with both African green monkey (C. aethiops) and human chromo...
We have used Alu polymerase chain reaction generated probes from rearranged human/rodent somatic cel...
For the last 15 years molecular cytogenetic techniques have been extensively used to study primate e...
Twenty-seven human alphoid DNA probes have been hybridized in situ to metaphase spreads of the commo...
For the last 15 years molecular cytogenetic techniques have been extensively used to study primate e...
A new strategy for analyzing chromosomal evolution in primates is presented using chromosomal in sit...
The catarrhine primates were the first group of species studied with comparative molecular cytogenet...
The generation of panels of somatic cell hybrids specific for chimpanzee, gorilla, orangutan, and ol...
Fluorescence in situ hybridization to chromosomes as a tool to understand human and primate genome e...
The homology between hylobatid chromosomes and other primates has long remained elusive. We used chr...
A panel of human chromosome painting probes and bacterial and PI artificial chromosome (BAC/PAC) clo...
A panel of chimpanzee-human somatic cell hybrids was characterized by dual Alu-PCR of the chimpanzee...
A new strategy for analyzing chromosomal evolu-tion in primates is presented using chromosomal in si...
We have generated a panel of 55 somatic cell hybrids retaining fragments of human chromosome 4. Each...
We used reciprocal chromosome painting with both African green monkey (C. aethiops) and human chromo...
We have used Alu polymerase chain reaction generated probes from rearranged human/rodent somatic cel...
For the last 15 years molecular cytogenetic techniques have been extensively used to study primate e...
Twenty-seven human alphoid DNA probes have been hybridized in situ to metaphase spreads of the commo...
For the last 15 years molecular cytogenetic techniques have been extensively used to study primate e...
A new strategy for analyzing chromosomal evolution in primates is presented using chromosomal in sit...
The catarrhine primates were the first group of species studied with comparative molecular cytogenet...
The generation of panels of somatic cell hybrids specific for chimpanzee, gorilla, orangutan, and ol...
Fluorescence in situ hybridization to chromosomes as a tool to understand human and primate genome e...
The homology between hylobatid chromosomes and other primates has long remained elusive. We used chr...
A panel of human chromosome painting probes and bacterial and PI artificial chromosome (BAC/PAC) clo...
A panel of chimpanzee-human somatic cell hybrids was characterized by dual Alu-PCR of the chimpanzee...
A new strategy for analyzing chromosomal evolu-tion in primates is presented using chromosomal in si...
We have generated a panel of 55 somatic cell hybrids retaining fragments of human chromosome 4. Each...
We used reciprocal chromosome painting with both African green monkey (C. aethiops) and human chromo...