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Embryonic expression pattern of the Drosophila Kallmann syndrome gene kal-1
The role of kal-1, the gene responsible for the X chromosome-linked form of Kallmann syndrome, is not well definite. In Drosophila, the kal-1 gene encodes a putative protein with the characteristic kal-1 topology but with only two Fibronectin-like type III (FnIII) domains. We studied the embryonic e...
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Published in: | Gene Expression Patterns 2004-11, Vol.5 (1), p.67-73 |
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Main Authors: | , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | The role of
kal-1, the gene responsible for the X chromosome-linked form of Kallmann syndrome, is not well definite. In
Drosophila, the
kal-1 gene encodes a putative protein with the characteristic
kal-1 topology but with only two Fibronectin-like type III (FnIII) domains. We studied the embryonic expression pattern of
kal-1 using whole mount in situ hybridization. This gene is expressed in the second half of embryogenesis showing a complex and dynamic pattern.
kal-1 is expressed during important morphogenetic processes such as germ band retraction, dorsal closure and head involution. We found expression in cells associated with different sensory organs, such as the antennal organ, which has an olfactory function, the chordotonal organ, the Keilin's organ and the dorsal pharyngeal organ. Expression of
kal-1 in the head also regards some ectodermal cells of the gnathal lobes. By studying the expression in
Dfd and
cnc homeotic mutants, we found that these ectodermal cells derive from the anterior and posterior mandibular segment, whose determination depends on
cnc, and that the expression in the posterior mandibular segment requires
Dfd activity.
kal-1 is also expressed in the posterior part of the male gonads in a specific subset of the somatic cells called male-specific somatic gonadal precursors (msSGPs). This is the first time that the expression of a
kal-1 ortholog has been demonstrated to be sex specific making the
kal-1 transcript a useful tool for the study of sex determination in the gonad. |
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ISSN: | 1567-133X 1872-7298 |
DOI: | 10.1016/j.modgep.2004.06.004 |