A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Recombinant construct P{tubP-GAL80ts}

General Information
Symbol P{tubP-GAL80ts} FlyBase ID FBtp0017264
Feature type transgenic_transposon
Size Expression data
Associated insertions 5 available
Molecular map
hide Recent Updates
Description
What does this section display?
This section contains items that were added to this record for each release. It currently only tracks new links between this FlyBase report and other FlyBase data classes (e.g. genes, references, stocks) or controlled vocabulary terms (e.g. GO, anatomy terms).
What does this section not display?
This section does not currently display links that were removed or gene model changes.
Update Feed
Click the icon below to subscribe to this FlyBase record and receive updates automatically through your feed reader.
FB2013_03
FB2013_02
Controlled Vocabulary Terms
All updates Click here to see a list of all updates to this record from FB2010_08 and on.
hide Description & Uses
Species synthetic construct
Location-dependent
role
Description
CV term
Qualifiers & info
Reference
transposon
P-element
Uses
CV term
Qualifiers & info
Reference
characterization
Cloning Sites
Location
Restriction sites
Reference
hide Sequence Data
Sequence (FB)
Associated Sequence Data
DDBJ /
EMBL /
GenBank
DNA sequence
Extent
 
hide Segments & Size
Total Size
Left end
Right end
Segments
Number
Orientation
Symbol
Reference
hide Features
CV term
Qualifiers & info
Reference
hide Component Alleles
Allele Scer\GAL80ts.αTub84B
Reference(s) (Yan et al., 2009, Fernandes et al., 2005, Monier et al., 2005, Davis, 2003.5.27, Liu et al., 2006, Micchelli and Perrimon, 2006, Gutierrez et al., 2007, de Navas et al., 2006, Remaud et al., 2008, Matakatsu and Blair, 2004, Rothenfluh et al., 2006, Warner and Longmore, 2009, McGuire et al., 2003, Han et al., 2005, Fischler et al., 2007, Gordon and Scott, 2009, McDonald et al., 2006, Ryoo et al., 2004, Speder et al., 2006, Komiyama et al., 2007, Berdnik et al., 2006, Hull-Thompson et al., 2009, Dutta et al., 2005, Benton et al., 2006, Sasaki et al., 2007, Baena-Lopez et al., 2009, Ward et al., 2006, Assa-Kunik et al., 2007, Hewes et al., 2006, Lieber et al., 2011, Xiong et al., 2010, Umemori et al., 2009, King et al., 2011, Sarno et al., 2011, Kang et al., 2011, Li et al., 2011, Bader et al., 2011, Stacey et al., 2010, Sweeney et al., 2011, Leatherman and DiNardo, 2008, Tomita et al., 2011, Taniguchi et al., 2011, Lippai et al., 2008, Estella and Mann, 2010, Weiss et al., 2012, Lee et al., 2011, Poernbacher et al., 2012, Gregory et al., 2012, Hergarden et al., 2012, Chen et al., 2012, Wu and Mlodzik, 2008, Koon et al., 2011, Wu et al., 2007, Lin et al., 2011, Casad et al., 2011, Zhu et al., 2011, Jafari et al., 2012, Schönbauer et al., 2011, Zhao et al., 2008, Poeck et al., 2008, Lee et al., 2009, Okado et al., 2009, Makhijani et al., 2007, Osman et al., 2009, Slaidina et al., 2009, Keleman et al., 2007, Bolduc et al., 2008, Bolivar et al., 2006, Wang et al., 2008, Peabody et al., 2008, Terriente et al., 2008, Zirin and Mann, 2007, Rallis et al., 2010, Kain et al., 2008, Zhou et al., 2008, Khaliullina et al., 2009, Xia and Tully, 2007, Zhao et al., 2009, Kamikouchi et al., 2009, Martin-Pena et al., 2006, Billeter et al., 2009, Liu et al., 2007, Agrawal et al., 2010, Takashima et al., 2008, Yan et al., 2009, Tang et al., 2008, Soustelle and Giangrande, 2007, Yan et al., 2009, Fang et al., 2010, Widmann and Dahmann, 2009, Jacques et al., 2009, Wang et al., 2010, Hari et al., 2008, Moressis et al., 2009, Yan et al., 2010, Blanchard et al., 2010, Wang et al., 2008, Messaritou et al., 2010, Franch-Marro et al., 2008, Tan et al., 2010, Nezis et al., 2008, Morton et al., 2008, Qian et al., 2008, Shibata et al., 2010, Kamikouchi et al., 2010, Zhou et al., 2010, Yu et al., 2010, Sanders et al., 2010, Pauli et al., 2010, Beller et al., 2010, Kelley et al., 2008, Pospisilik et al., 2010, Sung et al., 2010, Rewitz et al., 2010, Liu et al., 2010, Malzer et al., 2010, Tamura et al., 2010, Cognigni et al., 2011, Ellis and Carney, 2011, Repiso et al., 2010, Kim et al., 2010, Jiang and Edgar, 2009, Wang et al., 2011, Morante et al., 2011, Buchon et al., 2010, Chang et al., 2011, Yonamine et al., 2011, Hakeda-Suzuki et al., 2011, Acebes et al., 2011, Hogan et al., 2011, Nisoli et al., 2010, Kuranaga et al., 2011, Hakeda-Suzuki et al., 2011, Tonoki et al., 2011, Bang et al., 2011, Hou et al., 2011, Demontis and Perrimon, 2010, Silies et al., 2007, König et al., 2011, Olguín et al., 2011, Wu et al., 2011, Shuai et al., 2011, Copf et al., 2011, Fernández et al., 2011, Ng et al., 2011, Hijazi et al., 2011, Ren et al., 2010, Eddison et al., 2011, Rauskolb et al., 2011, Song et al., 2009, Schwedes et al., 2011, Okumura et al., 2010, Ferris et al., 2006, Fei et al., 2010, Lee et al., 2011, Lee et al., 2009, Clark et al., 2011, Gouzi et al., 2011, Thevenon et al., 2009, Fox and Spradling, 2009, Yao and Carlson, 2010, Vrailas-Mortimer et al., 2011, Bardin et al., 2010, Ofstad et al., 2011, Melkani et al., 2011, Bosveld et al., 2012, Yanagihashi et al., 2012, Claridge-Chang et al., 2009, Wang et al., 2012, Wang et al., 2011, Majumdar et al., 2012, Moraru et al., 2012, Daenzer et al., 2012, Duvall and Taghert, 2012, Chang et al., 2011, Saleem et al., 2012, Wang et al., 2011, Gault et al., 2012, Liu et al., 2012, Wang and Sun, 2012, Chakrabarti et al., 2012, Berger et al., 2012, Su et al., 2007, Sánchez-Hernández et al., 2012, Fritsch et al., 2012, Palm et al., 2012, Ruiz et al., 2012, Chen et al., 2012, Hozumi et al., 2008, Weber et al., 2012, You et al., 2011, Elsaesser et al., 2010, Rajan and Perrimon, 2012, Michels et al., 2011, Biteau et al., 2010, Krüttner et al., 2012, Yang et al., 2008, Liu et al., 2010, Karim and Moore, 2011, Peru Y Colón de Portugal et al., 2012, Füger et al., 2012, Callejo et al., 2011, Volders et al., 2012, Takemura and Adachi-Yamada, 2011, Kosmidis et al., 2010, Papanikolopoulou et al., 2010, Schneider et al., 2012, Petrovic and Hummel, 2008, Vonhoff et al., 2013, Gupta et al., 2008, Tayler et al., 2012, Duran et al., 2012)
Molecular data
Construct: Encodes a temperature-sensitive Scer\GAL80 expressed under the control of the αTub84B promoter.
Phenotypic class
Phenotype manifest in
dendrite & dorsal multidendritic neuron ddaC | larval stage | conditional - heat sensitive, with Scer\GAL4ppk.PG, ik2Scer\UAS.cKa
Other information
hide Expression Data
Reporter Expression
Additional Information
Statement
Reference
Marker for
Reflects expression of
hide Progenitors & Descendants
progenitor(s)
descendant(s)
hide Comments
hide Stocks Listed in FlyBase ( 5 )
Bloomington
hide External Crossreferences & Linkouts
Other Crossreferences
Linkouts
hide Synonyms & Secondary IDs
Reported As
Symbol Synonym
Gal90ts
P(tub-GAL80ts)
P(tubP-GAL80ts)
p{tubP-GAL80ts}
p{tubP-GAL80ts}20
P{w+mC=tubP-Gal80ts}
PtubP-GAL80ts
ptub-gal80ts
pTub-GAL80ts
temperature sensitive-GAL80
Temperature sensitive Gal80
tub1-Gal80ts
tub1α-Gal80ts
tub.Gal80ts
tub>Gal80ts
tub-Gal80
tubGal80
tub-GAL80
tub-GAL80ts20
TubGAL80ts
tub-GAL80TS
tubGAL80ts
TubP-Gal80
tubP-gal80ts
tubP-Gal80TS
tubP-GAL80ts
Tubulin-G80ts
tubulin-gal80ts
tubulinGal80ts
tubulinGAL80ts
Tubulin-Gal80TS
Tubulin-GAL80TS
tubulin-Gal80ts
tubulin-gal80ts
tubulin-GLA80TS
UAS-tubGAL80ts
ubi-Gal80ts
Secondary FlyBase IDs
hide References ( 212 )
Generate a list of
List References by type
hide Recent research papers ( 84 )
Vonhoff et al., 2013, Development 140(3): 606--616
Temporal coherency between receptor expression, neural activity and AP-1-dependent transcription regulates Drosophila motoneuron dendrite development. [FBrf0220342]
Berger et al., 2012, Cell Rep. 2(2): 407--418
FACS Purification and Transcriptome Analysis of Drosophila Neural Stem Cells Reveals a Role for Klumpfuss in Self-Renewal. [FBrf0219320]
Chakrabarti et al., 2012, Cell Host Microbe 12(1): 60--70
Infection-induced host translational blockage inhibits immune responses and epithelial renewal in the Drosophila gut. [FBrf0218984]
Chen et al., 2012, Science 335(6069): 678--685
Visualizing long-term memory formation in two neurons of the Drosophila brain. [FBrf0217453]
Chen et al., 2012, Dev. Neurobiol. 72(11): 1422--1432
The POU-domain protein Pdm3 regulates axonal targeting of R neurons in the Drosophila ellipsoid body. [FBrf0219674]
Daenzer et al., 2012, PLoS Genet. 8(5): e1002721
UDP-Galactose 4'-Epimerase Activities toward UDP-Gal and UDP-GalNAc Play Different Roles in the Development of Drosophila melanogaster. [FBrf0218493]
Duran et al., 2012, EMBO Mol. Med. 4(8): 719--729
Deleterious effects of neuronal accumulation of glycogen in flies and mice. [FBrf0219126]
Duvall and Taghert, 2012, PLoS Biol. 10(6): e1001337
The Circadian Neuropeptide PDF Signals Preferentially through a Specific Adenylate Cyclase Isoform AC3 in M Pacemakers of Drosophila. [FBrf0218594]
Fritsch et al., 2012, J. Biol. Chem. 287(8): 5942--5953
Different Requirements for Proteolytic Processing of Bone Morphogenetic Protein 5/6/7/8 Ligands in Drosophila melanogaster. [FBrf0217533]
Füger et al., 2012, PLoS Genet. 8(11): e1003066
Spastic Paraplegia Mutation N256S in the Neuronal Microtubule Motor KIF5A Disrupts Axonal Transport in a Drosophila HSP Model. [FBrf0220146]
Gault et al., 2012, J. Cell Biol. 196(5): 605--621
Drosophila CK1-γ, gilgamesh, controls PCP-mediated morphogenesis through regulation of vesicle trafficking. [FBrf0217630]
Gregory et al., 2012, PLoS ONE 7(2): e31899
The Aggregation and Neurotoxicity of TDP-43 and Its ALS-Associated 25 kDa Fragment Are Differentially Affected by Molecular Chaperones in Drosophila. [FBrf0217614]
Hergarden et al., 2012, Proc. Natl. Acad. Sci. U.S.A. 109(10): 3967--3972
Allatostatin-A neurons inhibit feeding behavior in adult Drosophila. [FBrf0217661]
Jafari et al., 2012, PLoS Biol. 10(3): e1001280
Combinatorial activation and repression by seven transcription factors specify Drosophila odorant receptor expression. [FBrf0217822]
Krüttner et al., 2012, Neuron 76(2): 383--395
Drosophila CPEB Orb2A Mediates Memory Independent of Its RNA-Binding Domain. [FBrf0219767]
Liu et al., 2012, PLoS ONE 7(8): e42725
Drosophila EYA Regulates the Immune Response against DNA through an Evolutionarily Conserved Threonine Phosphatase Motif. [FBrf0219297]
Majumdar et al., 2012, Cell 148(3): 515--529
Critical Role of Amyloid-like Oligomers of Drosophila Orb2 in the Persistence of Memory. [FBrf0217407]
Moraru et al., 2012, Neural Dev. 7(1): 14
Analysis of cell identity, morphology, apoptosis and mitotic activity in a primary neural cell culture system in Drosophila. [FBrf0218691]
Palm et al., 2012, PLoS Genet. 8(7): e1002828
Lipoproteins in Drosophila melanogaster-Assembly, Function, and Influence on Tissue Lipid Composition. [FBrf0219024]
Peru Y Colón de Portugal et al., 2012, J. Neurosci. 32(49): 17706--17713
Adult Neuronal Arf6 Controls Ethanol-Induced Behavior with Arfaptin Downstream of Rac1 and RhoGAP18B. [FBrf0220158]
Poernbacher et al., 2012, Curr. Biol. 22(5): 389--396
Drosophila Pez acts in hippo signaling to restrict intestinal stem cell proliferation. [FBrf0217766]
Rajan and Perrimon, 2012, Cell 151(1): 123--137
Drosophila cytokine unpaired 2 regulates physiological homeostasis by remotely controlling insulin secretion. [FBrf0219535]
Ruiz et al., 2012, PLoS ONE 7(9): e45649
Drosophila Zpr1 (Zinc Finger Protein 1) Is Required Downstream of Both EGFR And FGFR Signaling in Tracheal Subcellular Lumen Formation. [FBrf0219539]
Saleem et al., 2012, Mech. Dev. 129(5-8): 177--191
Drosophila melanogaster p24 trafficking proteins have vital roles in development and reproduction. [FBrf0219054]
Schneider et al., 2012, PLoS ONE 7(12): e52007
Neuronal basis of innate olfactory attraction to ethanol in Drosophila. [FBrf0220349]
Sánchez-Hernández et al., 2012, Development 139(20): 3849--3858
The WIF domain of the human and Drosophila Wif-1 secreted factors confers specificity for Wnt or Hedgehog. [FBrf0219478]
Volders et al., 2012, J. Neurosci. 32(43): 15193--15204
Drosophila rugose Is a Functional Homolog of Mammalian Neurobeachin and Affects Synaptic Architecture, Brain Morphology, and Associative Learning. [FBrf0219807]
Wang et al., 2012, Mol. Cell. Biol. 32(12): 2203--2213
LST8 Regulates Cell Growth via Target-of-Rapamycin Complex 2 (TORC2). [FBrf0218417]
Wang and Sun, 2012, Development 139(18): 3413--3421
Segregation of eye and antenna fates maintained by mutual antagonism in Drosophila. [FBrf0219201]
Weber et al., 2012, Genetics 191(1): 145--162
Novel regulators of planar cell polarity: a genetic analysis in Drosophila. [FBrf0218210]
Weiss et al., 2012, Genetics 190(2): 581--600
Huntingtin Aggregation Kinetics and Their Pathological Role in a Drosophila Huntington's Disease Model. [FBrf0217529]
Yanagihashi et al., 2012, J. Cell Sci. 125(8): 1980--1990
Snakeskin, a membrane protein associated with smooth septate junctions, is required for intestinal barrier function in Drosophila. [FBrf0218431]
Acebes et al., 2011, J. Neurosci. 31(8): 2734--2745
Synapse loss in olfactory local interneurons modifies perception. [FBrf0213264]
Bader et al., 2011, Cell 145(3): 371--382
A conserved f box regulatory complex controls proteasome activity in Drosophila. [FBrf0213568]
Bang et al., 2011, PLoS Genet. 7(3): e1001346
Dopamine signalling in mushroom bodies regulates temperature-preference behaviour in Drosophila. [FBrf0213392]
Callejo et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(31): 12591--12598
Feature Article: From the Cover: Dispatched mediates Hedgehog basolateral release to form the long-range morphogenetic gradient in the Drosophila wing disk epithelium. [FBrf0214615]
Casad et al., 2011, Genetics 189(3): 861--870
Cardiomyopathy Is Associated with Ribosomal Protein Gene Haplo-Insufficiency in Drosophila melanogaster. [FBrf0216591]
Chang et al., 2011, PLoS Genet. 7(2): e1001288
Pathogenic VCP/TER94 Alleles Are Dominant Actives and Contribute to Neurodegeneration by Altering Cellular ATP Level in a Drosophila IBMPFD Model. [FBrf0213008]
Chang et al., 2011, Development 138(17): 3803--3812
Differential adhesion and actomyosin cable collaborate to drive Echinoid-mediated cell sorting. [FBrf0214612]
Clark et al., 2011, Curr. Biol. 21(19): 1672--1677
Multiple TGF-β Superfamily Signals Modulate the Adult Drosophila Immune Response. [FBrf0216429]
Cognigni et al., 2011, Cell Metab. 13(1): 92--104
Enteric neurons and systemic signals couple nutritional and reproductive status with intestinal homeostasis. [FBrf0212594]
Copf et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(19): 8059--8064
Cytokine signaling through the JAK/STAT pathway is required for long-term memory in Drosophila. [FBrf0213703]
Eddison et al., 2011, Neuron 70(5): 979--990
arouser Reveals a Role for Synapse Number in the Regulation of Ethanol Sensitivity. [FBrf0213908]
Ellis and Carney, 2011, Genetics 187(1): 157--169
Socially-Responsive Gene Expression in Male Drosophila melanogaster Is Influenced by the Sex of the Interacting Partner. [FBrf0212780]
Fernández et al., 2011, Development 138(11): 2337--2346
Actin-Capping Protein and the Hippo pathway regulate F-actin and tissue growth in Drosophila. [FBrf0213674]
Gouzi et al., 2011, PLoS Genet. 7(9): e1002281
The receptor tyrosine kinase alk controls neurofibromin functions in Drosophila growth and learning. [FBrf0216258]
Hakeda-Suzuki et al., 2011, Nat. Neurosci. 14(3): 314--323
Golden Goal collaborates with Flamingo in conferring synaptic-layer specificity in the visual system. [FBrf0213128]
Hijazi et al., 2011, PLoS ONE 6(3): e17763
The ly6 protein coiled is required for septate junction and blood brain barrier organisation in Drosophila. [FBrf0213269]
Hogan et al., 2011, PLoS Genet. 7(2): e1001305
Two frizzled planar cell polarity signals in the Drosophila wing are differentially organized by the fat/dachsous pathway. [FBrf0213159]
Hou et al., 2011, Nitric Oxide 24(1): 17--24
Nitric oxide metabolism controlled by formaldehyde dehydrogenase (fdh, homolog of mammalian GSNOR) plays a crucial role in visual pattern memory in Drosophila. [FBrf0212726]
Kang et al., 2011, PLoS ONE 6(12): e29800
Novel Cytochrome P450, cyp6a17, Is Required for Temperature Preference Behavior in Drosophila. [FBrf0217065]
Karim and Moore, 2011, J. Neurosci. 31(47): 17017--17027
Convergent local identity and topographic projection of sensory neurons. [FBrf0216770]
King et al., 2011, J. Neurosci. 31(3): 1139--1148
Drosophila tao Controls Mushroom Body Development and Ethanol-Stimulated Behavior through par-1. [FBrf0212818]
Koon et al., 2011, Nat. Neurosci. 14(2): 190--199
Autoregulatory and paracrine control of synaptic and behavioral plasticity by octopaminergic signaling. [FBrf0212895]
Kuranaga et al., 2011, Development 138(8): 1493--1499
Apoptosis controls the speed of looping morphogenesis in Drosophila male terminalia. [FBrf0213320]
König et al., 2011, EMBO J. 30(8): 1549--1562
Ecdysteroids affect Drosophila ovarian stem cell niche formation and early germline differentiation. [FBrf0213531]
Lee et al., 2011, Cell Struct. Funct. 36(2): 197--208
Regulation of Intestinal Stem Cell Proliferation by Human Methyl-CpG-binding Protein-2 in Drosophila. [FBrf0216745]
Lee et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(33): 13794--13799
Serotonin-mushroom body circuit modulating the formation of anesthesia-resistant memory in Drosophila. [FBrf0214737]
Li et al., 2011, PLoS ONE 6(11): e28269
The hector G-Protein Coupled Receptor Is Required in a Subset of fruitless Neurons for Male Courtship Behavior. [FBrf0216834]
Lieber et al., 2011, Neuron 69(3): 468--481
DSL-Notch Signaling in the Drosophila Brain in Response to Olfactory Stimulation. [FBrf0212999]
Lin et al., 2011, PLoS Genet. 7(12): e1002408
Drosophila Ribosomal Protein Mutants Control Tissue Growth Non-Autonomously via Effects on the Prothoracic Gland and Ecdysone. [FBrf0217066]
Melkani et al., 2011, PLoS ONE 6(7): e22579
The UNC-45 Chaperone Is Critical for Establishing Myosin-Based Myofibrillar Organization and Cardiac Contractility in the Drosophila Heart Model. [FBrf0214543]
Michels et al., 2011, Learn. Mem. 18(5): 332--344
Cellular site and molecular mode of synapsin action in associative learning. [FBrf0213538]
Morante et al., 2011, Development 138(4): 687--693
Cell migration in Drosophila optic lobe neurons is controlled by eyeless/Pax6. [FBrf0212874]
Ng et al., 2011, Curr. Biol. 21(8): 625--634
Glial cells physiologically modulate clock neurons and circadian behavior in a calcium-dependent manner. [FBrf0213518]
Ofstad et al., 2011, Nature 474(7350): 204--207
Visual place learning in Drosophila melanogaster. [FBrf0213884]
Olguín et al., 2011, Curr. Biol. 21(3): 236--242
Intertissue mechanical stress affects frizzled-mediated planar cell polarity in the Drosophila notum epidermis. [FBrf0212947]
Rauskolb et al., 2011, PLoS Biol. 9(6): e1000624
Zyxin links fat signaling to the hippo pathway. [FBrf0213900]
Sarno et al., 2011, Int. J. Dev. Biol. 55(10-11-12): 975--979
Effect of the transformer-2 gene of Anastrepha on the somatic sexual development of Drosophila. [FBrf0217213]
Schwedes et al., 2011, J. Insect Physiol. 57(7): 899--907
Ecdysone receptor expression and activity in adult Drosophila melanogaster. [FBrf0214050]
Schönbauer et al., 2011, Nature 479(7373): 406--409
Spalt mediates an evolutionarily conserved switch to fibrillar muscle fate in insects. [FBrf0216735]
Shuai et al., 2011, J. Neurogenet. 25(1-2): 35--39
Stress Resistance Conferred by Neuronal Expression of Dominant-Negative Rac in Adult Drosophila melanogaster. [FBrf0213665]
Sweeney et al., 2011, Neuron 72(5): 734--747
Secreted Semaphorins from Degenerating Larval ORN Axons Direct Adult Projection Neuron Dendrite Targeting. [FBrf0216932]
Takemura and Adachi-Yamada, 2011, Dev. Biol. 357(2): 336--346
Cell death and selective adhesion reorganize the dorsoventral boundary for zigzag patterning of Drosophila wing margin hairs. [FBrf0214791]
Tomita et al., 2011, J. Neurosci. 31(37): 13137--13146
Pan-Neuronal Knockdown of Calcineurin Reduces Sleep in the Fruit Fly, Drosophila melanogaster. [FBrf0215571]
Tonoki et al., 2011, Genes Cells 16(5): 557--564
Aging causes distinct characteristics of polyglutamine amyloids in vivo. [FBrf0213535]
Vrailas-Mortimer et al., 2011, Dev. Cell 21(4): 783--795
A Muscle-Specific p38 MAPK/Mef2/MnSOD Pathway Regulates Stress, Motor Function, and Life Span in Drosophila. [FBrf0216446]
Wang et al., 2011, Dev. Biol. 350(2): 414--428
Notch signaling regulates neuroepithelial stem cell maintenance and neuroblast formation in Drosophila optic lobe development. [FBrf0212909]
Wang et al., 2011, Nat. Neurosci. 14(6): 757--762
Hierarchical chemosensory regulation of male-male social interactions in Drosophila. [FBrf0213751]
Wang et al., 2011, PLoS ONE 6(11): e25890
Drosophila TRPA Channel Painless Inhibits Male-Male Courtship Behavior through Modulating Olfactory Sensation. [FBrf0216587]
Wu et al., 2011, Curr. Biol. 21(10): 848--854
Heterotypic Gap Junctions between Two Neurons in the Drosophila Brain Are Critical for Memory. [FBrf0213804]
Yonamine et al., 2011, J. Cell Biol. 192(4): 557--567
Sphingosine kinases and their metabolites modulate endolysosomal trafficking in photoreceptors. [FBrf0213095]
You et al., 2011, Dev. Dyn. 240(3): 640--648
Sulfated is a negative feedback regulator of wingless in Drosophila. [FBrf0213052]
Zhu et al., 2011, Proc. Natl. Acad. Sci. U.S.A. 108(51): 20615--20620
Ets transcription factor Pointed promotes the generation of intermediate neural progenitors in Drosophila larval brains. [FBrf0216951]