The embryonic expression patterns and the knockdown phenotypes of zebrafish ADP-ribosylation factor-like 6 interacting protein gene
Resource
Developmental Dynamics 238 (1): 232-240
Journal
Developmental Dynamics
Pages
232-240
Date Issued
2009
Date
2009
Author(s)
Huang, Hsing-Yen
Dai, En-Sheng
Liu, Jeng-Ting
Tu, Chi-Tung
Yang, Tzu-Ching
Tsai, Huai-Jen
Abstract
ADP-ribosylation factor-like 6 (Arl6) mutation is linked to human disease and Arl6 interacts with Arl6 interacting protein (Arl6ip). However, the expression pattern and function of Arl6ip during embryogenesis are unknown. To confirm whether abnormal Arl6ip function might result in embryonic defects in zebrafish, we examined the expression patterns of arl6ip during embryogenesis, and they were maternally expressed and exhibited in the brain, optic primordia, hypochord, spinal cord, myotome, heart, fin-bud, kidney, trunk, and retina. Knockdown of Arl6ip revealed the following phenotypic defects: microphthalmia, disorganized pigment pattern, flat head, defective tectum, deficient pectoral fins, abnormal pneumatic duct, pericardial edema, and deformed trunk. Particularly, histological dissection of the retinae of arl6ip-morphants revealed that neuronal differentiation is severely delayed, resulting in no formation of retinal layers. We further confirmed that opsins of arl6ip-morphants were not transcribed. Based on this evidence, Arl6ip may play important roles in zebrafish ocular, heart, and fin-bud development. ? 2008 Wiley-Liss, Inc.
Subjects
Arl6; Arl6ip; Development; Embryos; Expressions; Eyes; Fin-bud; Heart; Microphthalmia; Retina; Zebrafish
SDGs
Other Subjects
adp ribosylation factor like 6 interacting protein gene; article; brain; controlled study; developmental disorder; embryo; embryo development; fin; flat head; gene; gene expression; gene function; heart; histology; hypochord; kidney; microphthalmia; myotome; nerve cell differentiation; nonhuman; nucleotide sequence; optic primordia; organ; pectoral fin deficiency; pericardial edema; phenotype; pneumatic duct abdnormality; priority journal; retina; spinal cord; tectum defect; trunk; trunk deformity; zebra fish; Adaptor Proteins, Signal Transducing; Animals; Gene Expression Regulation, Developmental; Gene Knockdown Techniques; Heart; Humans; In Situ Hybridization; Membrane Proteins; Morphogenesis; Phenotype; Retina; Zebrafish; Zebrafish Proteins; Danio rerio