Timing of Wingless signalling distinguishes maxillary and antennal identities in Drosophila melanogaster

Author:

Lebreton Gaëlle1,Faucher Christian1,Cribbs David L.1,Benassayag Corinne1

Affiliation:

1. Centre de Biologie du Développement, UMR 5547 and IFR 109,Université de Toulouse and CNRS, 118 route de Narbonne, Bâtiment 4R3, 31062 Toulouse Cedex, France.

Abstract

The Drosophila adult head mostly derives from the composite eye-antenna imaginal disc. The antennal disc gives rise to two adult olfactory organs: the antennae and maxillary palps. Here, we have analysed the regional specification of the maxillary palp within the antennal disc. We found that a maxillary field, defined by expression of the Hox gene Deformed, is established at about the same time as the eye and antennal fields during the L2 larval stage. The genetic program leading to maxillary regionalisation and identity is very similar to the antennal one, but is distinguished primarily by delayed prepupal expression of the ventral morphogen Wingless (Wg). We find that precociously expressing Wg in the larval maxillary field suffices to transform it towards antennal identity, whereas overexpressing Wg later in prepupae does not. These results thus indicate that temporal regulation of Wg is decisive to distinguishing maxillary and antennal organs. Wg normally acts upstream of the antennal selector spineless (ss) in maxillary development. However, mis-expression of Ss can prematurely activate wg via a positive-feedback loop leading to a maxillary-to-antenna transformation. We characterised: (1) the action of Wg through ssselector function in distinguishing maxillary from antenna; and (2) its direct contribution to identity choice.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

Reference47 articles.

1. Abu-Shaar, M. and Mann, R. S. (1998). Generation of multiple antagonistic domains along the proximodistal axis during Drosophila leg development. Development125,3821-3830.

2. Agnes, F., Suzanne, M. and Noselli, S. (1999). The Drosophila JNK pathway controls the morphogenesis of imaginal discs during metamorphosis. Development126,5453-5462.

3. Belenkaya, T. Y., Han, C., Standley, H. J., Lin, X., Houston, D. W., Heasman, J. and Lin, X. (2002). pygopus encodes a nuclear protein essential for wingless/Wnt signaling. Development129,4089-4101.

4. Benassayag, C., Plaza, S., Callaerts, P., Clements, J., Romeo,Y., Gehring, W. J. and Cribbs, D. L. (2003). Evidence for a direct functional antagonism of the selector genes proboscipedia and eyeless in Drosophila head development. Development130,575-586.

5. Blackman, R. K., Sanicola, M., Raftery, L. A., Gillevet, T. and Gelbart, W. M. (1991). An extensive 3′ cis-regulatory region directs the imaginal disk expression of decapentaplegic, a member of the TGF-beta family in Drosophila. Development111,657-666.

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