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Fgf3 and Fgf16 expression patterns define spatial and temporal domains in the developing chick inner ear
被引:0
|作者:
Daniel Olaya-Sánchez
Luis Óscar Sánchez-Guardado
Sho Ohta
Susan C. Chapman
Gary C. Schoenwolf
Luis Puelles
Matías Hidalgo-Sánchez
机构:
[1] University of Extremadura,Department of Cell Biology, School of Science
[2] University of Murcia,Department of Human Anatomy and Psychobiology, School of Medicine
[3] University of Utah,Department of Neurobiology and Anatomy
[4] 2R066 School of Medicine,Department of Biological Sciences
[5] Clemson University,undefined
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关键词:
Fibroblastic growth factors;
Otic specification;
Sensory patches;
Acoustic-vestibular ganglion;
Otic innervation;
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摘要:
The inner ear is a morphologically complex sensory structure with auditory and vestibular functions. The developing otic epithelium gives rise to neurosensory and non-sensory elements of the adult membranous labyrinth. Extrinsic and intrinsic signals manage the patterning and cell specification of the developing otic epithelium by establishing lineage-restricted compartments defined in turn by differential expression of regulatory genes. FGF3 and FGF16 are excellent candidates to govern these developmental events. Using the chick inner ear, we show that Fgf3 expression is present in the borders of all developing cristae. Strong Fgf16 expression was detected in a portion of the developing vertical and horizontal pouches, whereas the cristae show weaker or undetected Fgf16 expression at different developmental stages. Concerning the rest of the vestibular sensory elements, both the utricular and saccular maculae were Fgf3 positive. Interestingly, strong Fgf16 expression delimited these Fgf16-negative sensory patches. The Fgf3-negative macula neglecta and the Fgf3-positive macula lagena were included within weakly Fgf16-expressing areas. Therefore, different FGF-mediated mechanisms might regulate the specification of the anterior (utricular and saccular) and posterior (neglecta and lagena) maculae. In the developing cochlear duct, dynamic Fgf3 and Fgf16 expression suggests their cooperation in the early specification and later cell differentiation in the hearing system. The requirement of Fgf3 and Fgf16 genes in endolymphatic apparatus development and neurogenesis are discussed. Based on these observations, FGF3 and FGF16 seem to be key signaling pathways that control the inner ear plan by defining epithelial identities within the developing otic epithelium.
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页码:131 / 149
页数:18
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