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A molecularly defined duplication set for the X chromosome of Drosophila melanogaster.


ABSTRACT: We describe a molecularly defined duplication kit for the X chromosome of Drosophila melanogaster. A set of 408 overlapping P[acman] BAC clones was used to create small duplications (average length 88 kb) covering the 22-Mb sequenced portion of the chromosome. The BAC clones were inserted into an attP docking site on chromosome 3L using ?C31 integrase, allowing direct comparison of different transgenes. The insertions complement 92% of the essential and viable mutations and deletions tested, demonstrating that almost all Drosophila genes are compact and that the current annotations of the genome are reasonably accurate. Moreover, almost all genes are tolerated at twice the normal dosage. Finally, we more precisely mapped two regions at which duplications cause diplo-lethality in males. This collection comprises the first molecularly defined duplication set to cover a whole chromosome in a multicellular organism. The work presented removes a long-standing barrier to genetic analysis of the Drosophila X chromosome, will greatly facilitate functional assays of X-linked genes in vivo, and provides a model for functional analyses of entire chromosomes in other species.

SUBMITTER: Venken KJ 

PROVIDER: S-EPMC2998297 | biostudies-literature | 2010 Dec

REPOSITORIES: biostudies-literature

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A molecularly defined duplication set for the X chromosome of Drosophila melanogaster.

Venken Koen J T KJ   Popodi Ellen E   Holtzman Stacy L SL   Schulze Karen L KL   Park Soo S   Carlson Joseph W JW   Hoskins Roger A RA   Bellen Hugo J HJ   Kaufman Thomas C TC  

Genetics 20100927 4


We describe a molecularly defined duplication kit for the X chromosome of Drosophila melanogaster. A set of 408 overlapping P[acman] BAC clones was used to create small duplications (average length 88 kb) covering the 22-Mb sequenced portion of the chromosome. The BAC clones were inserted into an attP docking site on chromosome 3L using ΦC31 integrase, allowing direct comparison of different transgenes. The insertions complement 92% of the essential and viable mutations and deletions tested, dem  ...[more]

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