A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Allele Dmel\armΔN.Scer\UAS

General Information
SymbolDmel\armΔN.Scer\UASSpeciesD. melanogaster
NameFlyBase IDFBal0061503
Feature typealleleAssociated geneDmel\arm
Allele class
Mutagenin vitro construct - coding region fusion
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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
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
UniProtKB/Swiss-Prot
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Progenitor genotype
Nature of the lesion
Statement
Reference
Construct: A truncated arm protein lacking the entire N-terminal domain (amino acids 1 to 128) is expressed under the control of Scer\UAS regulatory sequences.
Carried in construct
Cytology
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Statement
Reference
Expression of arm[ΔN.Scer\UAS] under the control of Scer\GAL4[dome-PG14] blocks differentiation of hemocyte precursors in the lymph gland.
Expression of arm[ΔN.Scer\UAS] in the retina behind the furrow using Scer\GAL4[GMR.PF] does not really affect R axon projection, with only a few mild misroutings found.
When armΔN.Scer\UAS is driven by Scer\GAL4c306 or Scer\GAL4slbo.2.6 no effect is seen on border cell migration.
Expression of armΔN.Scer\UAS under the control of Scer\GAL4da.G32 results in a phenotype identical to that produced by overexpression of wg.
When expression is driven by Scer\GAL4da.G32 the embryonic cuticle is devoid of denticles.
Expression of armΔN.Scer\UAS under the control of either Scer\GAL4dpp.blk1 or Scer\GAL4T80 causes conversion of notum to pouch tissue in the wing disc, but no ectopic growth in the pouch is seen.
Causes G2 arrest in the ZNC of the developing wing.
Expression of armΔN.Scer\UAS using Scer\GAL4e22c gives rise to embryos with partially ablated denticle belts, especially along the ventral midline. Embryos expressing armΔN.Scer\UAS using Scer\GAL4h-1J3 have fewer denticles in many even-numbered segments.
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Statement
Reference
When expression is driven by Scer\GAL4da.G32 in a fz21, Df(3L)fz2 or fz23, Df(3L)fz2 mutant background the embryonic cuticle is devoid of denticles.
wgl-8 embryos expressing armΔN.Scer\UAS (using Scer\GAL4e22c) secrete naked cuticle interspersed with denticles on their ventral surface, while the dorsal surface is unchanged from the wgl-8 mutant phenotype.
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hide Synonyms & Secondary IDs ( 3 )
Reported As
Symbol Synonym
armΔN.Scer\UAS
 
armΔN.UAS
 
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Secondary FlyBase IDs
hide References ( 12 )
Research paper
Giorgianni and Mann, 2011, Dev. Cell 20(4): 455--468
Establishment of Medial Fates along the Proximodistal Axis of the Drosophila Leg through Direct Activation of dachshund by Distalless. [FBrf0213490]
Sinenko et al., 2009, Dev. Cell 16(5): 756--763
Dual role of wingless signaling in stem-like hematopoietic precursor maintenance in Drosophila. [FBrf0207962]
Estella et al., 2008, Dev. Cell 14(1): 86--96
Molecular integration of wingless, decapentaplegic, and autoregulatory inputs into Distalless during Drosophila leg development. [FBrf0202802]
Franch-Marro et al., 2006, Development 133(5): 785--790
Association of tracheal placodes with leg primordia in Drosophila and implications for the origin of insect tracheal systems. [FBrf0190289]
Sato et al., 2006, Nat. Neurosci. 9(1): 67--75
DWnt4 regulates the dorsoventral specificity of retinal projections in the Drosophila melanogaster visual system. [FBrf0191282]
Buratovich and Wilder, 2001, D. I. S. 84: 145--157
The role of wingless in the development of the proximal wing hinge of Drosophila. [FBrf0150733]
Loureiro et al., 2001, Dev. Biol. 235(1): 33--44
Activated armadillo/beta-catenin does not play a general role in cell migration and process extension in Drosophila. [FBrf0136851]
Buratovich et al., 2000, Dev. Genes Evol. 210(3): 111--119
DWnt-4 and wingless have distinct activities in the Drosophila dorsal epidermis. [FBrf0125145]
Bhanot et al., 1999, Development 126(18): 4175--4186
Frizzled and DFrizzled-2 function as redundant receptors for wingless during Drosophila embryonic development. [FBrf0111329]
Nagaraj et al., 1999, Development 126(5): 975--985
Role of the EGF receptor pathway in growth and patterning of the Drosophila wing through the regulation of vestigial. [FBrf0107900]
Johnston and Edgar, 1998, Nature 394(6688): 82--84
Wingless and Notch regulate cell-cycle arrest in the developing Drosophila wing. [FBrf0102947]
Pai et al., 1997, Development 124(11): 2255--2266
Negative regulation of Armadillo, a Wingless effector in Drosophila. [FBrf0093638]