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Development, Vol 121, Issue 8 2265-2278, Copyright © 1995 by Company of Biologists


JOURNAL ARTICLES

Sequential organizing activities of engrailed, hedgehog and decapentaplegic in the Drosophila wing

M Zecca, K Basler and G Struhl
Zoologisches Institut, Universitat Zurich, Switzerland.

The Drosophila wing is formed by two cell populations, the anterior and posterior compartments, which are distinguished by the activity of the selector gene engrailed (en) in posterior cells. Here, we show that en governs growth and patterning in both compartments by controlling the expression of the secreted proteins hedgehog (hh) and decapentaplegic (dpp) as well as the response of cells to these signaling molecules. First, we demonstrate that en activity programs wing cells to express hh whereas the absence of en activity programs them to respond to hh by expressing dpp. As a consequence, posterior cells secrete hh and induce a stripe of neighboring anterior cells across the compartment boundary to secrete dpp. Second, we demonstrate that dpp can exert a long-range organizing influence on surrounding wing tissue, specifying anterior or posterior pattern depending on the compartmental provenance, and hence the state of en activity, of the responding cells. Thus, dpp secreted by anterior cells along the compartment boundary has the capacity to organize the development of both compartments. Finally, we report evidence suggesting that dpp may exert its organizing influence by acting as a gradient morphogen in contrast to hh which appears to act principally as a short range inducer of dpp.
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Control of cell fate and polarity in the adult abdominal segments of Drosophila by optomotor-blind
Development, January 10, 1997; 124(19): 3715 - 3726.
[Abstract] [PDF]


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DevelopmentHome page
S. Blair and A Ralston
Smoothened-mediated Hedgehog signalling is required for the maintenance of the anterior-posterior lineage restriction in the developing wing of Drosophila
Development, January 10, 1997; 124(20): 4053 - 4063.
[Abstract] [PDF]


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DevelopmentHome page
D. Strutt and M Mlodzik
Hedgehog is an indirect regulator of morphogenetic furrow progression in the Drosophila eye disc
Development, January 9, 1997; 124(17): 3233 - 3240.
[Abstract] [PDF]


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DevelopmentHome page
J. de Celis and S Bray
Feed-back mechanisms affecting Notch activation at the dorsoventral boundary in the Drosophila wing
Development, January 9, 1997; 124(17): 3241 - 3251.
[Abstract] [PDF]


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DevelopmentHome page
K Weigmann, S. Cohen, and C. Lehner
Cell cycle progression, growth and patterning in imaginal discs despite inhibition of cell division after inactivation of Drosophila Cdc2 kinase
Development, January 9, 1997; 124(18): 3555 - 3563.
[Abstract] [PDF]


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DevelopmentHome page
G Struhl, D. Barbash, and P. Lawrence
Hedgehog organises the pattern and polarity of epidermal cells in the Drosophila abdomen
Development, January 6, 1997; 124(11): 2143 - 2154.
[Abstract] [PDF]


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DevelopmentHome page
G Struhl, D. Barbash, and P. Lawrence
Hedgehog acts by distinct gradient and signal relay mechanisms to organise cell type and cell polarity in the Drosophila abdomen
Development, January 6, 1997; 124(11): 2155 - 2165.
[Abstract] [PDF]


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J. Cell Sci.Home page
C. Lehner and M. Lane
Cell cycle regulators in Drosophila: downstream and part of developmental decisions
J. Cell Sci., January 3, 1997; 110(5): 523 - 528.
[Abstract] [PDF]


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DevelopmentHome page
T. Heslip, H Theisen, H Walker, and J. Marsh
Shaggy and dishevelled exert opposite effects on Wingless and Decapentaplegic expression and on positional identity in imaginal discs
Development, January 3, 1997; 124(5): 1069 - 1078.
[Abstract] [PDF]


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DevelopmentHome page
J. Mullor, M Calleja, J Capdevila, and I Guerrero
Hedgehog activity, independent of decapentaplegic, participates in wing disc patterning
Development, January 3, 1997; 124(6): 1227 - 1237.
[Abstract] [PDF]




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