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PMID: 8650162 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Independent determination of symmetry and polarity in the Drosophila eye.

Choi KW, Mozer B, Benzer S

Abstract

In each facet of the Drosophila compound eye, a cluster of photoreceptor cells assumes an asymmetric trapezoidal pattern. These clusters have opposite orientations above and below an equator, showing global dorsoventral mirror symmetry. However, in the mutant spiny legs, the polarization of each cluster appears to be random, so that no equator is evident. The apparent lack of an equator suggests that spiny legs+ may be involved in the establishment of global dorsoventral identity that might be essential for proper polarization of the photoreceptor clusters. Alternatively, a global dorsoventral pattern could be present, but spiny legs+ may be required for local polarization of individual clusters. Using an enhancer trap strain in which white+ gene expression is restricted to the dorsal field, we show that white+ expression in spiny legs correctly respects dorsoventral position even in facets with inappropriate polarizations; the dorsoventral boundary is indeed present, whereas the mechanism for polarization is perturbed. It is suggested that the boundary is established before the action of spiny legs+ by an independent mechanism.

MeSH Terms
Animals Drosophila/embryology,genetics,physiology Mutation Retina/embryology
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Choi K W
Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
Mozer B
Benzer S
References (27)
27 references, click to expand
  1. Genetic and cytogenetic analysis of the 43A-E region containing the segment polarity gene costa and the cellular polarity genes prickle and spiny-legs in Drosophila melanogaster.
    Genetics. 1993 Sep;135(1):105-15 PMID: 8224812
  2. The beginning of pattern formation in the Drosophila compound eye: the morphogenetic furrow and the second mitotic wave.
    Development. 1991 Nov;113(3):841-50 PMID: 1726564
  3. The segment polarity gene hedgehog is required for progression of the morphogenetic furrow in the developing Drosophila eye.
    Cell. 1993 Dec 3;75(5):927-38 PMID: 8252628
  4. Migration of glia along photoreceptor axons in the developing Drosophila eye.
    Neuron. 1994 Feb;12(2):423-31 PMID: 8110466
  5. dishevelled is required during wingless signaling to establish both cell polarity and cell identity.
    Development. 1994 Feb;120(2):347-60 PMID: 8149913
  6. The frizzled gene of Drosophila encodes a membrane protein with an odd number of transmembrane domains.
    Mech Dev. 1994 Feb;45(2):127-37 PMID: 8199049
  7. Rotation of photoreceptor clusters in the developing Drosophila eye requires the nemo gene.
    Cell. 1994 Jul 15;78(1):125-36 PMID: 8033204
  8. Genes controlling cellular polarity in Drosophila.
    Dev Suppl. 1993;:269-77 PMID: 8049482
  9. Regulation of furrow progression in the Drosophila eye by cAMP-dependent protein kinase A.
    Nature. 1995 Feb 23;373(6516):705-9 PMID: 7854454
  10. cAMP-dependent protein kinase and hedgehog act antagonistically in regulating decapentaplegic transcription in Drosophila imaginal discs.
    Cell. 1995 Feb 24;80(4):543-52 PMID: 7867062
  11. The genetic control of tissue polarity in Drosophila.
    Bioessays. 1992 Nov;14(11):735-41 PMID: 1365886
  12. Wingless and patched are negative regulators of the morphogenetic furrow and can affect tissue polarity in the developing Drosophila compound eye.
    Development. 1995 Aug;121(8):2279-89 PMID: 7671795
  13. Epithelial planar polarity in the developing Drosophila eye.
    Development. 1995 Aug;121(8):2451-9 PMID: 7671809
  14. frizzled regulates mirror-symmetric pattern formation in the Drosophila eye.
    Development. 1995 Sep;121(9):3045-55 PMID: 7555730
  15. Role of the morphogenetic furrow in establishing polarity in the Drosophila eye.
    Development. 1995 Dec;121(12):4085-94 PMID: 8575309
  16. White as a reporter gene to detect transcriptional silencers specifying position-specific gene expression during Drosophila melanogaster eye development.
    Genetics. 1995 Nov;141(3):1075-86 PMID: 8582614
  17. Neuronal differentiation in Drosophila ommatidium.
    Dev Biol. 1987 Apr;120(2):366-76 PMID: 17985475
  18. [In vivo optical study of photoreceptor elements in the compound eye of Drosophila].
    Kybernetik. 1971 Jan;8(1):1-13 PMID: 5558428
  19. Periodate-lysine-paraformaldehyde fixative. A new fixation for immunoelectron microscopy.
    J Histochem Cytochem. 1974 Dec;22(12):1077-83 PMID: 4374474
  20. Development of the Drosophila retina, a neurocrystalline lattice.
    Dev Biol. 1976 Oct 15;53(2):217-40 PMID: 825400
  21. A genetic analysis of the determination of cuticular polarity during development in Drosophila melanogaster.
    J Embryol Exp Morphol. 1982 Apr;68:37-57 PMID: 6809878
  22. The cellular dynamics of pattern formation in the eye of Drosophila.
    J Embryol Exp Morphol. 1985 Oct;89:313-31 PMID: 3937883
  23. Directional non-cell autonomy and the transmission of polarity information by the frizzled gene of Drosophila.
    Nature. 1987 Oct 8-14;329(6139):549-51 PMID: 3116434
  24. A Drosophila tissue polarity locus encodes a protein containing seven potential transmembrane domains.
    Nature. 1989 Mar 16;338(6212):263-4 PMID: 2493583
  25. Searching for pattern and mutation in the Drosophila genome with a P-lacZ vector.
    Genes Dev. 1989 Sep;3(9):1273-87 PMID: 2558049
  26. Dual Bar homeo box genes of Drosophila required in two photoreceptor cells, R1 and R6, and primary pigment cells for normal eye development.
    Genes Dev. 1992 Jan;6(1):50-60 PMID: 1346120
  27. The TGF beta homolog dpp and the segment polarity gene hedgehog are required for propagation of a morphogenetic wave in the Drosophila retina.
    Cell. 1993 Dec 3;75(5):913-26 PMID: 8252627
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1996-06-11
Pages
5737-41
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC39130
Subset
IM
Grants
NIA NIH HHS · AG12289 · United States
NEI NIH HHS · EY09278 · United States
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