An Exploration of the Sequence of a 2.9-Mb Region of the Genome of Drosophila melanogaster: The Adh Region

Author:

Ashburner M12,Misra S3,Roote J1,Lewis S E3,Blazej R4,Davis T5,Doyle C4,Galle R4,George R4,Harris N4,Hartzell G3,Harvey D36,Hong L3,Houston K4,Hoskins R4,Johnson G1,Martin C4,Moshrefi A4,Palazzolo M4,Reese M G3,Spradling A7,Tsang G36,Wan K4,Whitelaw K4,Kimmel B4,Celniker S4,Rubin G M436

Affiliation:

1. Department of Genetics, University of Cambridge, Cambridge, CB2 3EH, England

2. EMBL–European Bioinformatics Institute, Wellcome Trust Genome Campus, Hinxton, Cambridge, CB10 1SD, England

3. Berkeley Drosophila Genome Project, Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3200

4. Berkeley Drosophila Genome Project, Lawrence Berkeley National Laboratory, Berkeley, California 94720

5. Department of Pathology, University of Wales College of Medicine, Cardiff, CF4 4XN, Wales

6. Howard Hughes Medical Institute, Life Sciences Annex, University of California, Berkeley, California 94720

7. Howard Hughes Medical Institute, Carnegie Institution of Washington, Baltimore, Maryland

Abstract

Abstract A contiguous sequence of nearly 3 Mb from the genome of Drosophila melanogaster has been sequenced from a series of overlapping P1 and BAC clones. This region covers 69 chromosome polytene bands on chromosome arm 2L, including the genetically well-characterized “Adh region.” A computational analysis of the sequence predicts 218 protein-coding genes, 11 tRNAs, and 17 transposable element sequences. At least 38 of the protein-coding genes are arranged in clusters of from 2 to 6 closely related genes, suggesting extensive tandem duplication. The gene density is one protein-coding gene every 13 kb; the transposable element density is one element every 171 kb. Of 73 genes in this region identified by genetic analysis, 49 have been located on the sequence; P-element insertions have been mapped to 43 genes. Ninety-five (44%) of the known and predicted genes match a Drosophila EST, and 144 (66%) have clear similarities to proteins in other organisms. Genes known to have mutant phenotypes are more likely to be represented in cDNA libraries, and far more likely to have products similar to proteins of other organisms, than are genes with no known mutant phenotype. Over 650 chromosome aberration breakpoints map to this chromosome region, and their nonrandom distribution on the genetic map reflects variation in gene spacing on the DNA. This is the first large-scale analysis of the genome of D. melanogaster at the sequence level. In addition to the direct results obtained, this analysis has allowed us to develop and test methods that will be needed to interpret the complete sequence of the genome of this species.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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