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Pattern formation in the Drosophila eye disc

Data up to Jan 2025

Published2009
Citations158
References145

Total Citations Per Year

Abstract

References (145)

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The Drosophila TGFα homolog Spitz acts in photoreceptor recruitment in the developing retina

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Proneural function of neurogenic genes in the developing Drosophila eye

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glial cells missing and gcm2 Cell Autonomously Regulate Both Glial and Neuronal Development in the Visual System of Drosophila

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Roadkill attenuates Hedgehog responses through degradation of Cubitus interruptus

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Dual role for Hedgehog in the regulation of the proneural gene atonal during ommatidia development

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act up Controls Actin Polymerization to Alter Cell Shape and Restrict Hedgehog Signaling in the Drosophila Eye Disc

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Delta/Notch and Boss/Sevenless Signals Act Combinatorially to Specify the Drosophila R7 Photoreceptor

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Hedgehog Signaling Is a Principal Inducer of Myosin-II-Driven Cell Ingression in Drosophila Epithelia

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Myosin II Regulates Complex Cellular Arrangement and Epithelial Architecture in Drosophila

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Growth and Differentiation

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Palmitoylation of the EGFR Ligand Spitz by Rasp Increases Spitz Activity by Restricting Its Diffusion

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spitz, a Drosophila homolog of transforming growth factor-α, is required in the founding photoreceptor cells of the compound eye facets

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A primary role for the epidermal growth factor receptor in ommatidial spacing in the Drosophila eye

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Identifying targets of the rough homeobox gene of Drosophila: evidence that rhomboid functions in eye development

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Regulation of EGF receptor signaling establishes pattern across the developing Drosophila retina

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ThescabrousGene Encodes a Secreted Glycoprotein Dimer and Regulates Proneural Development inDrosophilaEyes

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Scabrous complexes with Notch to mediate boundary formation

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Identification of Regulatory Regions Driving the Expression of the Drosophila spalt Complex at Different Developmental Stages

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Identification of functionalsine oculismotifs in the autoregulatory element of its own gene, in theeyelessenhancer and in the signalling genehedgehog

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Lozenge is expressed in pluripotent precursor cells and patterns multiple cell types in the Drosophila eye through the control of cell-specific transcription factors

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The EGF receptor and notch signaling pathways control the initiation of the morphogenetic furrow duringDrosophilaeye development

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JAK/STAT signaling promotes regional specification by negatively regulatingwinglessexpression inDrosophila

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A conserved developmental program for sensory organ formation in Drosophila melanogaster

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Mechanism ofhedgehogsignaling duringDrosophilaeye development

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Deciphering synergistic and redundant roles of Hedgehog, Decapentaplegic and Delta that drive the wave of differentiation inDrosophilaeye development

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Hedgehog-Dependent Patterning in theDrosophilaEye Can Occur in the Absence of Dpp Signaling

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Role of the EGFR/Ras/Raf pathway in specification of photoreceptor cells in the Drosophila retina

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Cell-fate determination in the developing Drosophila eye: role of the rough gene

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Combinatorial signaling in the specification of primary pigment cells in theDrosophilaeye

2007 • 70 citations

Conservation and non-conservation of genetic pathways in eye specification

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A transcriptional chain linking eye specification to terminal determination of cone cells in the Drosophila eye

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Star Is Required for Neuronal Differentiation in the Drosophila Retina and Displays Dosage-Sensitive Interactions with Ras1

1993 • 63 citations

scabrous Modifies Epithelial Cell Adhesion and Extends the Range of Lateral Signalling during Development of the Spaced Bristle Pattern in Drosophila

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Two-step selection of a single R8 photoreceptor: a bistable loop betweensenselessandroughlocks in R8 fate

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Drosophila Eye Development

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Negative regulation of atonal in proneural cluster formation of Drosophila R8 photoreceptors

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Pointed regulates an eye-specific transcriptional enhancer in theDrosophila hedgehoggene, which is required for the movement of the morphogenetic furrow

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The R8-photoreceptor equivalence group in Drosophila: fate choice precedes regulated Delta transcription and is independent of Notch gene dose

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Star is required in a subset of photoreceptor cells in the developing Drosophila retina and displays dosage sensitive interactions with rough

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The highly ordered assembly of retinal axons and their synaptic partners is regulated by Hedgehog/Single-minded in theDrosophilavisual system

2006 • 43 citations

Upd/Jak/STAT signaling represses wg transcription to allow initiation of morphogenetic furrow in Drosophila eye development

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Computational analysis of EGFR inhibition by Argos

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Odd-skipped genes specify the signaling center that triggers retinogenesis inDrosophila

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A C-Terminal Motif Targets Hedgehog to Axons, Coordinating Assembly of the Drosophila Eye and Brain

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Small Wing PLCγ Is Required for ER Retention of Cleaved Spitz during Eye Development in Drosophila

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Ommatidial polarity in the Drosophila eye is determined by the direction of furrow progression and local interactions

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Scabrous and Gp150 are endosomal proteins that regulate Notch activity

2003 • 37 citations

Epithelial cell adhesion in the developing Drosophila retina is regulated by Atonal and the EGF receptor pathway

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Hedgehog and Dpp signaling induce cadherin Cad86C expression in the morphogenetic furrow during Drosophila eye development

2008 • 32 citations

Control of cell proliferation

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Bar homeodomain proteins are anti-proneural in theDrosophilaeye: transcriptional repression ofatonalby Bar prevents ectopic retinal neurogenesis

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Induction and autoregulation of the anti-proneural geneBarduring retinal neurogenesis inDrosophila

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Genetic and biochemical analysis of the role of Egfr in the morphogenetic furrow of the developingDrosophilaeye

2005 • 26 citations

Novel function of the class I bHLH protein Daughterless in the negative regulation of proneural gene expression in the Drosophila eye

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Suppression of Hedgehog signaling by Cul3 ligases in proliferation control of retinal precursors

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Groucho mediates a Ci-independent mechanism ofhedgehogrepression in the anterior wing pouch

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The CNS midline cells control the spitz class and Egfr signaling genes to establish the proper cell fate of the Drosophila ventral neuroectoderm.

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Signaling by the Drosophila epidermal growth factor receptor pathway during development

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The CNS midline cells and spitz class genes are required for proper patterning of Drosophila ventral neuroectoderm.

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Cell‐type specific utilization of multiple negative feedback loops generates developmental constancy

2005 • 14 citations

Determination of Neuronal Cell Fate: Lessons From the R7 Neuron of Drosophila

1994 • 14 citations

Diversification of cell types in the Drosophila eye by differential expression of prepattern genes

2001 • 11 citations

The activities of two Ets-related transcription factors required for Drosophila eye development are modulated by the Ras/MAPK pathway

1994 • 9 citations

Genetic And Molecular Bases Of Neurogenesis In Drosophila Melanogaster

1991 • 6 citations

The role of homeotic genes in determining the segmental pattern of chordotonal organs in Drosophila.

2002 • 5 citations

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Pattern formation in the Drosophila eye disc (2009) – The International Journal of Developmental Biology | Metascience Observatory Explorer