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 inScience (American Association for the Advancement of Science) Vol. 287; no. 5461; pp. 2271 - 2274
Main Authors Hoskins, Roger A., Nelson, Catherine R., Berman, Benjamin P., Laverty, Todd R., George, Reed A., Ciesiolka, Lisa, Naeemuddin, Mohammed, Arenson, Andrew D., Durbin, James, David, Robert G., Tabor, Paul E., Bailey, Michael R., DeShazo, Denise R., Catanese, Joseph, Mammoser, Aaron, Osoegawa, Kazutoyo, de Jong, Pieter J., Celniker, Susan E., Gibbs, Richard A., Rubin, Gerald M., Scherer, Steven E.
Format Journal Article
LanguageEnglish
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 AccessGet full text
ISSN0036-8075
1095-9203
DOI10.1126/science.287.5461.2271

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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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Issue 5461
Keywords Genetic mapping
Contig
Arthropoda
Insecta
Invertebrata
Chromosome 3
Chromosome 2
Artificial chromosome
Drosophila melanogaster
Diptera
Physical map
Drosophilidae
Language English
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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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