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A radiation hybrid map of chicken Chromosome 4. | LitMetric

A radiation hybrid map of chicken Chromosome 4.

Mamm Genome

Wageningen Institute of Animal Sciences, Animal Breeding and Genetics Group, Wageningen University, Marijkeweg 40, 6709 PG Wageningen, The Netherlands.

Published: July 2004

AI Article Synopsis

  • The physical mapping of chicken Chromosome 4 (GGA4) was enhanced using radiation hybrid (RH) mapping and bacterial artificial chromosome (BAC) mapping techniques, leading to a more detailed understanding of its structure.
  • Utilizing the ChickRH6 hybrid panel, a new RH map was developed, incorporating 11 microsatellite markers as anchors and identifying sequences for orthologous chicken genes through BLAST, resulting in nine linked groups aligned with a genetic map.
  • The combined approach of RH and BAC mapping contributed to mapping 61 genes on GGA4, which improved the comparative mapping resolution with human chromosomes and unveiled multiple genomic rearrangements between GGA4 and human Chromosomes 4q and Xp.

Article Abstract

The mapping resolution of the physical map for chicken Chromosome 4 (GGA4) was improved by a combination of radiation hybrid (RH) mapping and bacterial artificial chromosome (BAC) mapping. The ChickRH6 hybrid panel was used to construct an RH map of GGA4. Eleven microsatellites known to be located on GGA4 were included as anchors to the genetic linkage map for this chromosome. Based on the known conserved synteny between GGA4 and human Chromosomes 4 and X, sequences were identified for the orthologous chicken genes from these human chromosomes by BLAST analysis. These sequences were subsequently used for the development of STS markers to be typed on the RH panel. Using a logarithm of the odds (LOD) threshold of 5.0, nine linkage groups could be constructed which were aligned with the genetic linkage map of this chromosome. The resulting RH map consisted of the 11 microsatellite markers and 50 genes. To further increase the number of genes on the map and to provide additional anchor points for the physical BAC map of this chromosome, BAC clones were identified for 22 microsatellites and 99 genes. The combined RH and BAC mapping approach resulted in the mapping of 61 genes on GGA4 increasing the resolution of the chicken-human comparative map for this chromosome. This enhanced comparative mapping resolution enabled the identification of multiple rearrangements between GGA4 and human Chromosomes 4q and Xp.

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Source
http://dx.doi.org/10.1007/s00335-004-2362-8DOI Listing

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