spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    


This Article
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Ghysen, A.
Right arrow Articles by O'Kane, C.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Ghysen, A.
Right arrow Articles by O'Kane, C.
Social Bookmarking
 Add to CiteULike   Add to Complore   Add to Connotea   Add to Del.icio.us   Add to Digg   Add to Reddit   Add to Technorati   Add to Twitter  
What's this?

Development, Vol 105, Issue 1 35-52, Copyright © 1989 by Company of Biologists


JOURNAL ARTICLES

Neural enhancer-like elements as specific cell markers in Drosophila

A Ghysen and C O'Kane
Laboratoire de Genetique, Universite Libre de Bruxelles, Rhode-St-Genese, Belgium.

We have analysed four strains of Drosophila melanogaster which each carry the transposon P[lac,ry+] at a unique genomic location. In one of the strains, P[lac,ry+]A37, all the peripheral neurones that we can identify express the P-lac fusion protein; in at least some cases, and the support cells associated to particular neurones are also labelled. Expression of the fusion protein can be detected in subepidermal cells of the body segments as early as 4-5 h of development, according to a precise and reproducible pattern. On the basis of genetic evidence, we propose that these cells are precursors of sense organs, implying that the development of the peripheral nervous system overlaps in time with the development of the central nervous system. In the other three strains, the fusion product is expressed in unique subsets of cells of the peripheral nervous system, as well as in some other tissues.
Add to CiteULike CiteULike   Add to Complore Complore   Add to Connotea Connotea   Add to Del.icio.us Del.icio.us   Add to Digg Digg   Add to Reddit Reddit   Add to Technorati Technorati   Add to Twitter Twitter    What's this?


This article has been cited by other articles:


Home page
J. Cell Sci.Home page
V. Bharathi, S. K. Pallavi, R. Bajpai, B. S. Emerald, and L. S. Shashidhara
Genetic characterization of the Drosophila homologue of coronin
J. Cell Sci., April 15, 2004; 117(10): 1911 - 1922.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Bajpai, K. Makhijani, P. R. Rao, and L. S. Shashidhara
Drosophila Twins regulates Armadillo levels in response to Wg/Wnt signal
Development, March 1, 2004; 131(5): 1007 - 1016.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
S. K. Pallavi and L. S. Shashidhara
Egfr/Ras pathway mediates interactions between peripodial and disc proper cells in Drosophila wing discs
Development, October 15, 2003; 130(20): 4931 - 4941.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
R. Urbach, R. Schnabel, and G. M. Technau
The pattern of neuroblast formation, mitotic domains and proneural gene expression during early brain development in Drosophila
Development, August 15, 2003; 130(16): 3589 - 3606.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
M. Prasad, R. Bajpai, and L. S. Shashidhara
Regulation of Wingless and Vestigial expression in wing and haltere discs of Drosophila
Development, April 15, 2003; 130(8): 1537 - 1547.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
R. A. Baines, L. Seugnet, A. Thompson, P. M. Salvaterra, and M. Bate
Regulation of Synaptic Connectivity: Levels of Fasciclin II Influence Synaptic Growth in the Drosophila CNS
J. Neurosci., August 1, 2002; 22(15): 6587 - 6595.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
T. Rusten, R Cantera, J Urban, G Technau, F. Kafatos, and R Barrio
Spalt modifies EGFR-mediated induction of chordotonal precursors in the embryonic PNS of Drosophila promoting the development of oenocytes
Development, January 3, 2001; 128(5): 711 - 722.
[Abstract] [PDF]


Home page
J. Neurosci.Home page
M. Balakireva, N. Gendre, R. F. Stocker, and J.-F. Ferveur
The Genetic Variant Voila1 Causes Gustatory Defects during Drosophila Development
J. Neurosci., May 1, 2000; 20(9): 3425 - 3433.
[Abstract] [Full Text] [PDF]


Home page
DevelopmentHome page
J. de Celis, R Barrio, and F. Kafatos
Regulation of the spalt/spalt-related gene complex and its function during sensory organ development in the Drosophila thorax
Development, January 6, 1999; 126(12): 2653 - 2662.
[Abstract] [PDF]


Home page
Genes Dev.Home page
D. M. Duncan, E. A. Burgess, and I. Duncan
Control of distal antennal identity and tarsal development in Drosophila by spineless-aristapedia, a homolog of the mammalian dioxin receptor
Genes & Dev., May 1, 1998; 12(9): 1290 - 1303.
[Abstract] [Full Text]


Home page
DevelopmentHome page
Y Tomoyasu, M Nakamura, and N Ueno
Role of dpp signalling in prepattern formation of the dorsocentral mechanosensory organ in Drosophila melanogaster
Development, January 11, 1998; 125(21): 4215 - 4224.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Vervoort, D. Merritt, A Ghysen, and C Dambly-Chaudiere
Genetic basis of the formation and identity of type I and type II neurons in Drosophila embryos
Development, January 7, 1997; 124(14): 2819 - 2828.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Okabe and H Okano
Two-step induction of chordotonal organ precursors in Drosophila embryogenesis
Development, January 3, 1997; 124(5): 1045 - 1053.
[Abstract] [PDF]


Home page
DevelopmentHome page
C. Neumann and S. Cohen
Long-range action of Wingless organizes the dorsal-ventral axis of the Drosophila wing
Development, January 2, 1997; 124(4): 871 - 880.
[Abstract] [PDF]


Home page
DevelopmentHome page
C. Neumann and S. Cohen
Distinct mitogenic and cell fate specification functions of wingless in different regions of the wing
Development, January 6, 1996; 122(6): 1781 - 1789.
[Abstract] [PDF]


Home page
DevelopmentHome page
E. Rulifson and S. Blair
Notch regulates wingless expression and is not required for reception of the paracrine wingless signal during wing margin neurogenesis in Drosophila
Development, January 9, 1995; 121(9): 2813 - 2824.
[Abstract] [PDF]


Home page
DevelopmentHome page
R Brewster and R Bodmer
Origin and specification of type II sensory neurons in Drosophila
Development, January 9, 1995; 121(9): 2923 - 2936.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Vervoort, D Zink, N Pujol, K Victoir, N Dumont, A Ghysen, and C Dambly-Chaudiere
Genetic determinants of sense organ identity in Drosophila: regulatory interactions between cut and poxn
Development, January 9, 1995; 121(9): 3111 - 3120.
[Abstract] [PDF]


Home page
DevelopmentHome page
F Schweisguth
Suppressor of Hairless is required for signal reception during lateral inhibition in the Drosophila pupal notum
Development, January 6, 1995; 121(6): 1875 - 1884.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Hoch, K Broadie, H Jackle, and H Skaer
Sequential fates in a single cell are established by the neurogenic cascade in the Malpighian tubules of Drosophila
Development, January 12, 1994; 120(12): 3439 - 3450.
[Abstract] [PDF]


Home page
DevelopmentHome page
F Schweisguth and J. Posakony
Antagonistic activities of Suppressor of Hairless and Hairless control alternative cell fates in the Drosophila adult epidermis
Development, January 6, 1994; 120(6): 1433 - 1441.
[Abstract] [PDF]


Home page
DevelopmentHome page
R Reuter
The gene serpent has homeotic properties and specifies endoderm versus ectoderm within the Drosophila gut
Development, January 5, 1994; 120(5): 1123 - 1135.
[Abstract] [PDF]


Home page
DevelopmentHome page
Y Zhang, A Ungar, C Fresquez, and R Holmgren
Ectopic expression of either the Drosophila gooseberry-distal or proximal gene causes alterations of cell fate in the epidermis and central nervous system
Development, January 5, 1994; 120(5): 1151 - 1161.
[Abstract] [PDF]


Home page
DevelopmentHome page
H Vaessin, M Brand, L. Jan, and Y. Jan
daughterless is essential for neuronal precursor differentiation but not for initiation of neuronal precursor formation in Drosophila embryo
Development, January 4, 1994; 120(4): 935 - 945.
[Abstract] [PDF]


Home page
DevelopmentHome page
H. E. Richardson, L. V. O'Keefe, S. I. Reed, and R. Saint
A Drosophila G1-specific cyclin E homolog exhibits different modes of expression during embryogenesis
Development, November 1, 1993; 119(3): 673 - 690.
[Abstract] [PDF]


Home page
DevelopmentHome page
S. Blair
Mechanisms of compartment formation: evidence that non-proliferating cells do not play a critical role in defining the D/V lineage restriction in the developing wing of Drosophila
Development, January 10, 1993; 119(2): 339 - 351.
[Abstract] [PDF]


Home page
DevelopmentHome page
M Brand, A. Jarman, L. Jan, and Y. Jan
asense is a Drosophila neural precursor gene and is capable of initiating sense organ formation
Development, January 9, 1993; 119(1): 1 - 17.
[Abstract] [PDF]


Home page
DevelopmentHome page
A. Jarman, M Brand, L. Jan, and Y. Jan
The regulation and function of the helix-loop-helix gene, asense, in Drosophila neural precursors
Development, January 9, 1993; 119(1): 19 - 29.
[Abstract] [PDF]


Home page
DevelopmentHome page
J. Williams, S. Paddock, and S. Carroll
Pattern formation in a secondary field: a hierarchy of regulatory genes subdivides the developing Drosophila wing disc into discrete subregions
Development, January 2, 1993; 117(2): 571 - 584.
[Abstract] [PDF]


Home page
DevelopmentHome page
X. Cui and C. Q. Doe
ming is expressed in neuroblast sublineages and regulates gene expression in the Drosophila central nervous system
Development, December 1, 1992; 116(4): 943 - 952.
[Abstract] [PDF]


Home page
DevelopmentHome page
A. Y. Hartenstein, A. Rugendorff, U. Tepass, and V. Hartenstein
The function of the neurogenic genes during epithelial development in the Drosophila embryo
Development, December 1, 1992; 116(4): 1203 - 1220.
[Abstract] [PDF]


Home page
Genes Dev.Home page
M Van Doren, P A Powell, D Pasternak, A Singson, and J W Posakony
Spatial regulation of proneural gene activity: auto- and cross-activation of achaete is antagonized by extramacrochaetae.
Genes & Dev., December 1, 1992; 6(12b): 2592 - 2605.
[Abstract] [PDF]


Home page
DevelopmentHome page
L Roder, C Vola, and S Kerridge
The role of the teashirt gene in trunk segmental identity in Drosophila
Development, January 8, 1992; 115(4): 1017 - 1033.
[Abstract] [PDF]


Home page
Genes Dev.Home page
G Friedrich and P Soriano
Promoter traps in embryonic stem cells: a genetic screen to identify and mutate developmental genes in mice.
Genes & Dev., September 1, 1991; 5(9): 1513 - 1523.
[Abstract] [PDF]


Home page
Genes Dev.Home page
L C Lo, J E Johnson, C W Wuenschell, T Saito, and D J Anderson
Mammalian achaete-scute homolog 1 is transiently expressed by spatially restricted subsets of early neuroepithelial and neural crest cells.
Genes & Dev., September 1, 1991; 5(9): 1524 - 1537.
[Abstract] [PDF]


Home page
Genes Dev.Home page
K Blochlinger, L Y Jan, and Y N Jan
Transformation of sensory organ identity by ectopic expression of Cut in Drosophila.
Genes & Dev., July 1, 1991; 5(7): 1124 - 1135.
[Abstract] [PDF]


Home page
Genes Dev.Home page
G Riddihough and D Ish-Horowicz
Individual stripe regulatory elements in the Drosophila hairy promoter respond to maternal, gap, and pair-rule genes.
Genes & Dev., May 1, 1991; 5(5): 840 - 854.
[Abstract] [PDF]


Home page
ScienceHome page
C Martinez and J Modolell
Cross-regulatory interactions between the proneural achaete and scute genes of Drosophila
Science, March 22, 1991; 251(5000): 1485 - 1487.
[Abstract] [PDF]


Home page
Genes Dev.Home page
K Blochlinger, R Bodmer, L Y Jan, and Y N Jan
Patterns of expression of cut, a protein required for external sensory organ development in wild-type and cut mutant Drosophila embryos.
Genes & Dev., August 1, 1990; 4(8): 1322 - 1331.
[Abstract] [PDF]


Home page
Genes Dev.Home page
J A Kassis
Spatial and temporal control elements of the Drosophila engrailed gene.
Genes & Dev., March 1, 1990; 4(3): 433 - 443.
[Abstract] [PDF]


Home page
Genes Dev.Home page
E Bier, L Y Jan, and Y N Jan
rhomboid, a gene required for dorsoventral axis establishment and peripheral nervous system development in Drosophila melanogaster.
Genes & Dev., February 1, 1990; 4(2): 190 - 203.
[Abstract] [PDF]


Home page
Genes Dev.Home page
E Bier, H Vaessin, S Shepherd, K Lee, K McCall, S Barbel, L Ackerman, R Carretto, T Uemura, and E Grell
Searching for pattern and mutation in the Drosophila genome with a P-lacZ vector.
Genes & Dev., September 1, 1989; 3(9): 1273 - 1287.
[Abstract] [PDF]


Home page
Genes Dev.Home page
H J Bellen, C J O'Kane, C Wilson, U Grossniklaus, R K Pearson, and W J Gehring
P-element-mediated enhancer detection: a versatile method to study development in Drosophila.
Genes & Dev., September 1, 1989; 3(9): 1288 - 1300.
[Abstract] [PDF]


Home page
Genes Dev.Home page
S Romani, S Campuzano, E R Macagno, and J Modolell
Expression of achaete and scute genes in Drosophila imaginal discs and their function in sensory organ development.
Genes & Dev., July 1, 1989; 3(7): 997 - 1007.
[Abstract] [PDF]




© The Company of Biologists Ltd 1989