Centromere-linked microsatellite markers for linkage groups 3, 4, 6, 7, 13, and 20 of zebrafish (Danio rerio).

Genomics

The Jake Gittlen Cancer Research Institute, Department of Pathology, The Milton S. Hershey Medical Center, The Pennsylvania State University College of Medicine, Hershey 17033, USA.

Published: July 2000

AI Article Synopsis

  • A significant number of mutations affecting zebrafish development and organ formation have been discovered through genetic screening, which require accurate chromosomal mapping.
  • Half-tetrad analysis is a fast method for mapping, but it relies on knowing centromere-linked markers, which have been identified for most of the 25 linkage groups using RAPD and microsatellite-based maps.
  • The study successfully identified microsatellite markers close to the centromeres of six linkage groups (3, 4, 6, 7, 13, and 20), enhancing the efficiency of mutation mapping in zebrafish.

Article Abstract

A large number of interesting mutations affecting development and organogenesis have been identified through genetic screens in zebrafish. Mapping of these mutations to a chromosomal region can be rapidly accomplished using half-tetrad analysis. However, knowledge of centromere-linked markers on every chromosome is essential to this mapping method. Centromeres on all 25 linkage groups have been mapped on the RAPD zebrafish genetic map. However, species specificity and the lack of codominance make RAPD markers less practical for mapping than microsatellite-based markers. On the microsatellite-based genetic map, centromere-linked markers have been identified for 19 linkage groups. No direct evidence has been published linking microsatellite markers to the centromeres of linkage groups 3, 4, 6, 7, 13, and 20. Therefore, we compared the microsatellite-based genetic map with the RAPD map to identify markers most likely linked to the centromeres of these 6 linkage groups. These candidate markers were tested for potential centromere linkage using four panels of half-tetrad embryos derived by early-pressure treatment of eggs from four different female zebrafish. We have identified microsatellite markers for linkage groups 3, 4, 6, 7, 13, and 20 to within 1.7 cM of their centromeres. These markers will greatly facilitate the rapid mapping of mutations in zebrafish by half-tetrad analysis.

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Source
http://dx.doi.org/10.1006/geno.2000.6233DOI Listing

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