A Database of Drosophila Genes & Genomes

FB2013_03, released May 7th, 2013
 

Aberration Dmel\Df(2L)esc-P3-0

General Information
SymbolDmel\Df(2L)esc-P3-0SpeciesD. melanogaster
NameFlyBase IDFBab0001810
Feature typechromosomal_deletion
Also Known AsDf(2L)escP3-0
Computed Breakpoints include 33A1;33E
Deleted segment33A1--33E
Sequence coordinates
Member of large scale dataset(s)
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Description
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FB2013_03
FB2013_02
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hide Nature of the Aberration
Cytological Order
Progenitor
Mutagen
Class of aberration (relative to progenitor)
Breakpoints
33A1-33A2;33B1-33B2
Causes alleles
Carries alleles
Transposon Insertions
Formalized genetic data bk1 << Agi << aret << bk2
Genetic mapping information
Comments
hide Comments on Cytology
Left limit of break 1 from polytene analysis (FBrf0080317) Right limit of break 1 from inclusion of salm (FBrf0047928) Limits of break 2 from polytene analysis (FBrf0082073)
 
hide Sequence Crossreferences
DDBJ /
EMBL /
GenBank
DNA sequence
Protein sequence
Name
 
hide Gene Deletion & Duplication Data
hide Genes Deleted / Disrupted
Complementation Data
Completely deleted / disrupted
Molecular Data
hide Genes NOT Deleted / Disrupted
Complementation Data
Molecular Data
hide Genes Duplicated
Complementation Data
Molecular Data
hide Genes NOT Duplicated
Complementation Data
Molecular Data
hide Related Comments
hide Phenotypic Data
In combination with other aberrations
NOT in combination with other aberrations
The Df(2L)esc-P3-0 chromosome does not act as a dominant suppressor of telomeric silencing (assayed using the effect of the chromosome on the eye colour phenotype of flies carrying "P{wvar}KR3-2", a stable "brown-red" variant of the P{3'WP-2,wvar}2Lt insertion).
Homozygous embryos do not complete head involution and tracheae and salivary glands are variable in size.
Heterozygosity for this deletion has no effect on the mutant ovarian phenotype of ovoD2.
hide Stocks ( 2 )
Bloomington
Kyoto
hide Notes on Origin
Discoverer
Struhl.
 
hide Balancer / Genotype Variants of the Aberration
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hide Synonyms & Secondary IDs ( 4 )
Reported As
Symbol Synonym
Df(2L)escP3-0
Df(2R)esc-P3-0
Name Synonym
Secondary FlyBase IDs
hide References ( 20 )
Research paper
Nilton et al., 2010, Development 137(14): 2427--2437
Crooked, coiled and crimpled are three Ly6-like proteins required for proper localization of septate junction components. [FBrf0211147]
Moore et al., 2009, Mech. Dev. 126(7): 503--516
Bruno negatively regulates germ cell-less expression in a BRE-independent manner. [FBrf0215430]
Ohno et al., 2008, Mech. Dev. 125(5-6): 527--541
ESC, ESCL and their roles in Polycomb Group mechanisms. [FBrf0205395]
Sugimura and Lilly, 2006, Dev. Cell 10(1): 127--135
Bruno inhibits the expression of mitotic cyclins during the prophase I meiotic arrest of Drosophila oocytes. [FBrf0190220]
Gao et al., 2004, J. Biol. Chem. 279(14): 14225--14231
Drosophila Pkd2 is haploid-insufficient for mediating optimal smooth muscle contractility. [FBrf0174776]
Mason et al., 2004, Genetics 168(3): 1353--1370
A deficiency screen for dominant suppressors of telomeric silencing in Drosophila. [FBrf0180277]
Presgraves, 2003, Genetics 163(3): 955--972
A fine-scale genetic analysis of hybrid incompatibilities in Drosophila. [FBrf0158988]
Hardiman et al., 2002, Genetics 161(1): 231--247
The bereft gene, a potential target of the neural selector gene cut, contributes to bristle morphogenesis. [FBrf0149016]
Ashton et al., 2001, Genetics 157(1): 283--294
Quantitative trait loci for the monoamine-related traits heart rate and headless behavior in Drosophila melanogaster. [FBrf0132335]
Barrio et al., 1999, Dev. Biol. 215(1): 33--47
Identification of regulatory regions driving the expression of the Drosophila spalt complex at different developmental stages. [FBrf0111797]
Webster et al., 1997, Genes Dev. 11(19): 2510--2521
Translational repressor bruno plays multiple roles in development and is widely conserved. [FBrf0098905]
Parker and Roberts, 1996, Biochem. Genet. 34(3-4): 117--131
AGI, a previously unreported D. melanogaster -glucosidase: Partial purification, characterization, and cytogenetic mapping. [FBrf0087652]
Harbecke and Lengyel, 1995, Rouxs Arch. Dev. Biol. 204(5): 308--329
Genes controlling posterior gut development in the Drosophila embryo. [FBrf0082073]
Pauli et al., 1995, Genetics 139(2): 713--732
Identification of regions interacting with ovoD mutations: Potential new genes involved in germline sex determination or differentiation in Drosophila melanogaster. [FBrf0080317]
Pauli et al., 1995, D. I. S. 76: 107--124
Dose dependent enhancers and suppressors of ovoD2. [FBrf0082455]
Castrillon et al., 1993, Genetics 135(2): 489--505
Toward a molecular genetic analysis of spermatogenesis in Drosophila melanogaster: characterization of male-sterile mutants generated by single P element mutagenesis. [FBrf0064394]
Frei et al., 1988, EMBO J. 7(1): 197--204
Molecular characterization of spalt, a homeotic gene required for head and tail development in the Drosophila embryo. [FBrf0047929]
Jurgens, 1988, EMBO J. 7(1): 189--196
Head and tail development of the Drosophila embryo involves spalt, a novel homeotic gene. [FBrf0047928]
FlyBase analysis
FlyBase, 2007, En masse symbol-based assigment of Aberration Class with respect to wild type.
En masse symbol-based assigment of Aberration Class with respect to wild type. [FBrf0191808]
Book
Lindsley and Zimm, 1992, The Genome of Drosophila melanogaster.
The Genome of Drosophila melanogaster. [FBrf0066905]