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A genetic linkage map for zebrafish: Comparative analysis and localization of genes and expressed sequences

  • Michael A. Gates
  • , Lisa Kim
  • , Elizabeth S. Egan
  • , Timothy Cardozo
  • , Howard I. Sirotkin
  • , Scott T. Dougan
  • , Deval Lashkari
  • , Ruben Abagyan
  • , Alexander F. Schier
  • , William S. Talbot
  • New York University
  • Stanford University
  • Stanford DNA Sequencing Technol. C.

Research output: Contribution to journalArticlepeer-review

179 Scopus citations

Abstract

Genetic screens in zebrafish (Danio rerio) have isolated mutations in hundreds of genes with essential functions. To facilitate the identification of candidate genes for these mutations, we have genetically mapped 104 genes and expressed sequence tags by scoring single-strand conformational polymorphisms in a panel of haploid siblings. To integrate this map with existing genetic maps, we also scored 275 previously mapped genes, microsatellites, and sequence-tagged sites in the same haploid panel. Systematic phylogenetic analysis defined likely mammalian orthologs of mapped zebrafish genes, and comparison of map positions in zebrafish and mammals identified significant conservation of synteny. This comparative analysis also identified pairs of zebrafish genes that appear to be orthologous to single mammalian genes, suggesting that these genes arose in a genome duplication that occurred in the teleost lineage after the divergence of fish and mammal ancestors. This comparative map analysis will be useful in predicting the locations of zebrafish genes from mammalian gene maps and in understanding the evolution of the vertebrate genome.

Original languageEnglish
Pages (from-to)334-347
Number of pages14
JournalGenome Research
Volume9
Issue number4
DOIs
StatePublished - Apr 1999

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