Systematic generation of high-resolution deletion coverage of the Drosophila melanogaster genome
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Open Access
- 22 February 2004
- journal article
- letter
- Published by Springer Nature in Nature Genetics
- Vol. 36 (3), 288-292
- https://doi.org/10.1038/ng1312
Abstract
In fruit fly research, chromosomal deletions are indispensable tools for mapping mutations, characterizing alleles and identifying interacting loci. Most widely used deletions were generated by irradiation or chemical mutagenesis. These methods are labor-intensive, generate random breakpoints and result in unwanted secondary mutations that can confound phenotypic analyses. Most of the existing deletions are large, have molecularly undefined endpoints and are maintained in genetically complex stocks. Furthermore, the existence of haplolethal or haplosterile loci makes the recovery of deletions of certain regions exceedingly difficult by traditional methods, resulting in gaps in coverage. Here we describe two methods that address these problems by providing for the systematic isolation of targeted deletions in the D. melanogaster genome. The first strategy used a P element–based technique to generate deletions that closely flank haploinsufficient genes and minimize undeleted regions. This deletion set has increased overall genomic coverage by 5–7%. The second strategy used FLP recombinase and the large array of FRT-bearing insertions described in the accompanying paper1 to generate 519 isogenic deletions with molecularly defined endpoints. This second deletion collection provides 56% genome coverage so far. The latter methodology enables the generation of small custom deletions with predictable endpoints throughout the genome and should make their isolation a simple and routine task.Keywords
This publication has 8 references indexed in Scilit:
- A complementary transposon tool kit for Drosophila melanogaster using P and piggyBacNature Genetics, 2004
- MICALs, a Family of Conserved Flavoprotein Oxidoreductases, Function in Plexin-Mediated Axonal RepulsionCell, 2002
- P-Element-Induced Recombination in Drosophila melanogaster: Hybrid Element InsertionGenetics, 1996
- Flanking Duplications and Deletions Associated With P-Induced Male Recombination in DrosophilaGenetics, 1996
- Engineering the Drosophila Genome: Chromosome Rearrangements by DesignGenetics, 1996
- Preferential transposition of Drosophila P elements to nearby chromosomal sites.Genetics, 1993
- Constructing deletions with defined endpoints in Drosophila.Proceedings of the National Academy of Sciences, 1990
- Site-Specific X-Chromosome Rearrangements from Hybrid Dysgenesis in Drosophila melanogasterScience, 1980