A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Dmel\Itp-r83Awc361

General Information
SymbolDmel\Itp-r83Awc361SpeciesD. melanogaster
NameFlyBase IDFBal0156339
Feature typealleleAssociated geneDmel\Itp-r83A
Also Known Asitprwc361
Map ( GBrowse ) GBrowse View Helpdetailed view FBal0156341 FBal0156345 FBal0156343 FBal0156349 FBal0156338 FBal0156348 FBal0156339
Allele class
Mutagenethyl methanesulfonate
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Description
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FB2013_03
FB2013_02
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Allele class
Mutagen
Mutations Mapped to the Genome
Type
Location
Additional Notes
References
point mutation
evidence=experimental
na_change=C1364323T
pr_change=R2813|Itp-r83A-PA,R2822|Itp-r83A-PB
reported_na_change=C?T
reported_pr_change=R2814@
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
UniProtKB/Swiss-Prot
UniProtKB/TrEMBL
Progenitor genotype
Nature of the lesion
Statement
Reference
Amino acid replacement: R2814@. Nucleotide substitution: C?T.
Cytology
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Statement
Reference
The spontaneous firing rate seen in dorsal-longitudinal muscles of Itp-r83A[wc361]/Itp-r83A[wc703] adults is normal. These adults can be divided into fliers and non-fliers (assayed using a cylinder drop test). About 30% are non-fliers - exhibiting only brief rhythmic flight patterns that are usually not sustained beyond 5 seconds in response to stimulation with an air puff. In contrast, the non-fliers exhibit sustained flight patterns (>30 seconds) in response to the same stimulus.
Itp-r83Awc703/Itp-r83Awc361, Itp-r83Aka1091/Itp-r83Awc361 and Itp-r83Asa54/Itp-r83Awc361 flies all show normal wing posture but do show a significant degree of flightlessness.
Itp-r83Awc361/Itp-r83Aug3 transheterozygotes are adaptation response defective.
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Statement
Reference
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361 has flightless | partially phenotype, enhanceable by Plc21Ck31911/Plc21C[+]
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Statement
Reference
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361, Plc21Ck31911/Plc21C[+] has flightless | partially phenotype, suppressible by Ca-P60A[+]/Ca-P60AKum170
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361, Plc21Ck31911/Plc21C[+] has neurophysiology defective phenotype, suppressible by Ca-P60A[+]/Ca-P60AKum170
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361 has flightless | partially phenotype, suppressible by Ca-P60A[+]/Ca-P60AKum170
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Statement
Reference
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Statement
Reference
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361 has wing phenotype, enhanceable by Plc21Ck31911/Plc21C[+]
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Statement
Reference
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361, Plc21Ck31911/Plc21C[+] has wing phenotype, suppressible by Ca-P60A[+]/Ca-P60AKum170
Gα49B[+]/Gαq221c, Itp-r83Awc703/Itp-r83Awc361 has wing phenotype, suppressible by Ca-P60A[+]/Ca-P60AKum170
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Statement
Reference
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Statement
Reference
The viability of Itp-r83A[wc703]/Itp-r83A[wc361] animals is unaffected by sl[1]/sl[1] or sl[2]/sl[2]. It is also unaffected by Gα49B[221c]/+, but the resulting adults have abnormal wing posture, an enhanced incidence of flight defects and mild endogenous hyperactivity of spontaneous firing recorded from the dorsal longitudinal muscles. Wing posture and flight defect phenotypes are enhanced and viability is reduced if Plc21C[k31911]/+ is also present, but partially suppressed by Gα49B[Scer\UAS.cRa]; Scer\GAL4[Ddc.PL] and completely or largely suppressed by Ca-P60A[Kum170]/+, even when Plc21C[k31911]/+ is also present.
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Statement
Reference
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Complements
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Comments
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Discoverer
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hide Synonyms & Secondary IDs ( 3 )
Reported As
Symbol Synonym
Itp-r83Awc361
 
Name Synonym
Secondary FlyBase IDs
hide References ( 4 )
Research paper
Banerjee et al., 2006, J. Neurosci. 26(32): 8278--8288
Compensation of inositol 1,4,5-trisphosphate receptor function by altering sarco-endoplasmic reticulum calcium ATPase activity in the Drosophila flight circuit. [FBrf0194925]
Banerjee et al., 2004, J. Neurosci. 24(36): 7869--7878
Loss of flight and associated neuronal rhythmicity in inositol 1,4,5-trisphosphate receptor mutants of Drosophila. [FBrf0180425]
Joshi et al., 2004, Genetics 166(1): 225--236
Genetic dissection of itpr gene function reveals a vital requirement in aminergic cells of Drosophila larvae. [FBrf0174703]
Deshpande et al., 2000, J. Neurobiol. 43(3): 282--288
The inositol 1,4,5-trisphosphate receptor is required for maintenance of olfactory adaptation in Drosophila antennae. [FBrf0128448]