A BAC-Based Physical Map of the Major Autosomes of Drosophila melanogaster
We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to...
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          | Published in | Science (American Association for the Advancement of Science) Vol. 287; no. 5461; pp. 2271 - 2274 | 
|---|---|
| Main Authors | , , , , , , , , , , , , , , , , , , , , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        Washington, DC
          American Society for the Advancement of Science
    
        24.03.2000
     American Association for the Advancement of Science The American Association for the Advancement of Science  | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 0036-8075 1095-9203  | 
| DOI | 10.1126/science.287.5461.2271 | 
Cover
| Abstract | We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. Three of five remaining gaps are in repeat-rich regions near the centromeres. A tiling path of clones spanning this map and STS maps of chromosomes X and 4 was sequenced to low coverage; the maps and tiling path sequence were used to support and verify the whole-genome sequence assembly, and tiling path BACs were used as templates in sequence finishing. | 
    
|---|---|
| AbstractList | We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. Three of five remaining gaps are in repeat-rich regions near the centromeres. A tiling path of clones spanning this map and STS maps of chromosomes X and 4 was sequenced to low coverage; the maps and tiling path sequence were used to support and verify the whole-genome sequence assembly, and tiling path BACs were used as templates in sequence finishing. We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. Three of five remaining gaps are in repeat-rich regions near the centromeres. A tiling path of clones spanning this map and STS maps of chromosomes X and 4 was sequenced to low coverage; the maps and tiling path sequence were used to support and verify the whole-genome sequence assembly, and tiling path BACs were used as templates in sequence finishing.We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. Three of five remaining gaps are in repeat-rich regions near the centromeres. A tiling path of clones spanning this map and STS maps of chromosomes X and 4 was sequenced to low coverage; the maps and tiling path sequence were used to support and verify the whole-genome sequence assembly, and tiling path BACs were used as templates in sequence finishing. We constructed a bacteria[ artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. We constructed a bacterial artificial chromosome (BAC)–based physical map of chromosomes 2 and 3 of Drosophila melanogaster , which constitute 81% of the genome. Sequence tagged site (STS) content, restriction fingerprinting, and polytene chromosome in situ hybridization approaches were integrated to produce a map spanning the euchromatin. Three of five remaining gaps are in repeat-rich regions near the centromeres. A tiling path of clones spanning this map and STS maps of chromosomes X and 4 was sequenced to low coverage; the maps and tiling path sequence were used to support and verify the whole-genome sequence assembly, and tiling path BACs were used as templates in sequence finishing.  | 
    
| Author | Catanese, Joseph Scherer, Steven E. Gibbs, Richard A. Nelson, Catherine R. Laverty, Todd R. Bailey, Michael R. DeShazo, Denise R. Mammoser, Aaron Celniker, Susan E. George, Reed A. Naeemuddin, Mohammed Osoegawa, Kazutoyo Rubin, Gerald M. Arenson, Andrew D. Hoskins, Roger A. Ciesiolka, Lisa Durbin, James Tabor, Paul E. de Jong, Pieter J. Berman, Benjamin P. David, Robert G.  | 
    
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| Copyright | Copyright 2000 American Association for the Advancement of Science 2000 INIST-CNRS Copyright American Association for the Advancement of Science Mar 24, 2000  | 
    
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| Keywords | Genetic mapping Contig Arthropoda Insecta Invertebrata Chromosome 3 Chromosome 2 Artificial chromosome Drosophila melanogaster Diptera Physical map Drosophilidae  | 
    
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| Snippet | We constructed a bacterial artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the... We constructed a bacterial artificial chromosome (BAC)–based physical map of chromosomes 2 and 3 of Drosophila melanogaster , which constitute 81% of the... We constructed a bacteria[ artificial chromosome (BAC)-based physical map of chromosomes 2 and 3 of Drosophila melanogaster, which constitute 81% of the...  | 
    
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| SubjectTerms | Algorithms Animals autosomes Bacteria bacterial artificial chromosomes Biological and medical sciences Centromere Centromere - genetics Chromatin Chromatin - genetics chromosome 2 chromosome 3 chromosome mapping Chromosomes Chromosomes, Bacterial Chromosomes, Bacterial - genetics Classical genetics, quantitative genetics, hybrids Cloning, Molecular Coding Contig Mapping cytogenetic analysis DNA Fingerprinting Drosophila Drosophila melanogaster Drosophila melanogaster - genetics Euchromatin False positive errors Fundamental and applied biological sciences. Psychology Gene Library Genes, Insect Genetic Markers Genetic Vectors genetics Genetics of eukaryotes. Biological and molecular evolution Genome Genomes Genomics In Situ Hybridization Insects Invertebrata Libraries Map libraries Molecular Biology Polytene chromosomes Repetitive Sequences, Nucleic Acid Restriction Mapping Science and Society Sequence Analysis, DNA Sequence Tagged Sites Telomere Telomere - genetics Tiling  | 
    
| Title | A BAC-Based Physical Map of the Major Autosomes of Drosophila melanogaster | 
    
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