A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Dmel\Dsp1EP355

General Information
SymbolDmel\Dsp1EP355SpeciesD. melanogaster
NameFlyBase IDFBal0089430
Feature typealleleAssociated geneDmel\Dsp1
Map ( GBrowse ) Untitled Document detailed view FBti0035319 FBti0007295 FBti0035756 FBti0071392 FBti0013430 FBti0056393 FBti0143653 FBti0050548 FBti0049016
Allele class
MutagenP-element activity
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Description
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FB2013_03
FB2013_02
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hide Nature of the Allele
Allele class
Mutagen
Mutations Mapped to the Genome
Type
Location
Additional Notes
References
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
UniProtKB/Swiss-Prot
UniProtKB/TrEMBL
Progenitor genotype
Nature of the lesion
Statement
Reference
The P{EP} element is inserted within the 5' UTR.
Caused by insertion
Cytology
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anterior fascicle & synapse, with Scer\GAL4elav-C155
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Statement
Reference
Expression using Scer\GAL4[ey.PU] does not induce a rough eye phenotype.
Mutant flies show a higher bacterial clearance activity than do control flies after injection with E.coli. Mutant flies show a lower survival rate after infection with E.coli than do control flies.
Expression of Dsp1EP355 under the control of Scer\GAL4GMR.PF results in a weak rough eye phenotype.
Flies expressing Dsp1EP355 under the control of Scer\GAL4ap-md544 have a strong thoracic cleft and a deformed scutellum and wings.
Mutant larvae expressing Dsp1EP355 under the control of Scer\GAL4elav-C155 have ISN neuron pathfinding defects. Mutant larvae expressing Dsp1EP355 under the control of Scer\GAL4elav-C155 have reduced or abnormal synapses.
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Statement
Reference
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Statement
Reference
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Statement
Reference
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Statement
Reference
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Statement
Reference
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Statement
Reference
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Statement
Reference
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Statement
Reference
The lower survival rate seen in Dsp1[EP355] mutant flies after infection with E.coli is suppressed if the flies are also heterozygous for Rel[E20].
pnrMD237/+ adults expressing Dsp1EP355 under the control of Scer\GAL4pnr-MD237 have a strong thoracic and scutellar cleft.
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Statement
Reference
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Comments
hide Stocks ( 1 )
Bloomington
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Discoverer
Selected as: a P{EP} insertion line that modifies the pnrMD237/+ phenotype when expressed using Scer\GAL4pnr-MD237.
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Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs ( 3 )
Reported As
Symbol Synonym
bssEP355
 
Name Synonym
Secondary FlyBase IDs
hide References ( 10 )
Research paper
Ji et al., 2012, G3 (Bethesda) 2(12): 1651--1660
In Vivo Regulation of E2F1 by Polycomb Group Genes in Drosophila. [FBrf0220353]
Cao et al., 2008, Genetics 178(3): 1457--1471
Identification of novel genes that modify phenotypes induced by Alzheimer's beta-amyloid overexpression in Drosophila. [FBrf0205107]
Kim et al., 2007, PLoS Biol. 5(9): e238
Down-regulation of NF-kappa B target genes by the AP-1 and STAT complex during the innate immune response in Drosophila. [FBrf0201134]
Mueller et al., 2005, Genetics 171(3): 1137--1152
Genetic modifier screens on hairless gain-of function phenotypes reveal genes involved in cell differentiation, cell growth and apoptosis in Drosophila melanogaster. [FBrf0190751]
Zhu et al., 2005, Genetics 170(2): 767--777
A screen for genes that influence fibroblast growth factor signal transduction in Drosophila. [FBrf0187664]
Pena-Rangel et al., 2002, Genetics 160(3): 1035--1050
A misexpression study examining dorsal thorax formation in Drosophila melanogaster. [FBrf0147055]
Kraut et al., 2001, Curr. Biol. 11(6): 417--430
A gain-of-function screen for genes controlling motor axon guidance and synaptogenesis in Drosophila. [FBrf0135708]
Rorth et al., 1998, Development 125(6): 1049--1057
Systematic gain-of-function genetics in Drosophila. [FBrf0101995]
Supplementary material
Kraut et al., 2001, Curr. Biol. 11(6):
A gain-of-function screen for genes controlling motor axon guidance and synaptogenesis in Drosophila. [FBrf0135968]
Personal communication to FlyBase
Gene Disruption Project members, 2001-, (Computer file)
(Computer file) [FBrf0132177]