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  5. Genes and signaling networks regulated during zebrafish optic vesicle morphogenesis
 
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Genes and signaling networks regulated during zebrafish optic vesicle morphogenesis

Author(s)
Yin, Jun  
Morrissey, Maria  
Shine, Lisa  
Kennedy, Ciarán  
Higgins, Desmond G  
Kennedy, Breandán  
Uri
http://hdl.handle.net/10197/8313
Date Issued
2014-09-30
Date Available
2017-02-03T15:26:39Z
Abstract
Background: The genetic cascades underpinning vertebrate early eye morphogenesis are poorly understood. One gene family essential for eye morphogenesis encodes the retinal homeobox (Rx) transcription factors. Mutations in the human retinal homeobox gene (RAX) can lead to gross morphological phenotypes ranging from microphthalmia to anophthalmia. Zebrafish rx3 null mutants produce a similar striking eyeless phenotype with an associated expanded forebrain. Thus, we used zebrafish rx3-/- mutants as a model to uncover an Rx3-regulated gene network during early eye morphogenesis. Results: Rx3-regulated genes were identified using whole transcriptomic sequencing (RNA-seq) of rx3-/- mutants and morphologically wild-type siblings during optic vesicle morphogenesis. A gene co-expression network was then constructed for the Rx3-regulated genes, identifying gene cross-talk during early eye development. Genes highly connected in the network are hub genes, which tend to exhibit higher expression changes between rx3-/- mutants and normal phenotype siblings. Hub genes down-regulated in rx3-/- mutants encompass homeodomain transcription factors and mediators of retinoid-signaling, both associated with eye development and known human eye disorders. In contrast, genes up-regulated in rx3-/- mutants are centered on Wnt signaling pathways, associated with brain development and disorders. The temporal expression pattern of Rx3-regulated genes was further profiled during early development from maternal stage until visual function is fully mature. Rx3-regulated genes exhibited synchronized expression patterns, and a transition of gene expression during the early segmentation stage when Rx3 was highly expressed. Furthermore, most of these deregulated genes are enriched with multiple RAX-binding motif sequences on the gene promoter. Conclusions: Here, we assembled a comprehensive model of Rx3-regulated genes during early eye morphogenesis. Rx3 promotes optic vesicle morphogenesis and represses brain development through a highly correlated and modulated network, exhibiting repression of genes mediating Wnt signaling and concomitant enhanced expression of homeodomain transcription factors and retinoid-signaling genes.
Sponsorship
Irish Research Council for Science, Engineering and Technology
Other Sponsorship
Biochemical Society Summer Vacation Studentship
Type of Material
Journal Article
Publisher
BioMed Central
Journal
BMC Genomics
Volume
15
Issue
825
Copyright (Published Version)
2014 the Authors
Subjects

Retinal homeobox tran...

Gene expression

Eye development

DOI
10.1186/1471-2164-15-825
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
File(s)
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Yin_2014_12864_2014_Article_6503.pdf

Size

2.36 MB

Format

Adobe PDF

Checksum (MD5)

45b0905adac951b5c763433826544501

Owning collection
Biomolecular and Biomedical Science Research Collection
Mapped collections
Conway Institute Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
All other content is subject to copyright.

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