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General Information
ZIRC
ZFIN ID: ZDB-FISH-161014-1
Fish name: kif3asa1617/sa1617
Genotype: kif3asa1617/sa1617
Targeting Reagent: none
HUMAN DISEASE MODELED by kif3asa1617/sa1617
No data available
GENE EXPRESSION
Gene expression in kif3asa1617/sa1617
Reporter gene expression No data available
PHENOTYPE
Phenotype in kif3asa1617/sa1617
Phenotype Conditions Figures
anterior crista cilium decreased amount, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
anterior crista cilium decreased length, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
cellular response to epinephrine stimulus delayed, abnormal control Fig. 8 from Raghupathy et al., 2016
central canal cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
eye decreased size, abnormal standard conditions Fig. 3Fig. S3 from Raghupathy et al., 2016
eye photoreceptor cell degenerate, abnormal standard conditions Fig. 5 from Raghupathy et al., 2016
eye photoreceptor cell photoreceptor connecting cilium absent, abnormal standard conditions Fig. 2 from Raghupathy et al., 2016
eye photoreceptor cell photoreceptor connecting cilium kif3a expression absent, abnormal standard conditions Fig. 2 from Raghupathy et al., 2016
eye photoreceptor cell photoreceptor outer segment decreased amount, abnormal standard conditions Fig. 4 from Raghupathy et al., 2016
hair cell anterior macula cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
hair cell posterior macula cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
kidney cystic, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
lateral crista cilium decreased amount, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
lateral crista cilium decreased length, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
lateral line cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
melanocyte melanosome spatial pattern, abnormal control Fig. 8 from Raghupathy et al., 2016
melanosome localization disrupted, abnormal control Fig. 8 from Raghupathy et al., 2016
olfactory pit cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
photoreceptor cell ciliary basal body ab1-ift88 labeling absent, abnormal standard conditions Fig. 5 from Pooranachandran et al., 2016
photoreceptor cell ciliary basal body mislocalised, abnormal standard conditions Fig. 2Fig. 3 from Pooranachandran et al., 2016
photoreceptor cell cilium absent, abnormal standard conditions Fig. 2 from Pooranachandran et al., 2016
photoreceptor cell photoreceptor connecting cilium absent, abnormal standard conditions Fig. 2 from Pooranachandran et al., 2016
photoreceptor cell photoreceptor outer segment absent, abnormal standard conditions Fig. 2 from Pooranachandran et al., 2016
photoreceptor cell photoreceptor outer segment displaced to photoreceptor cell lateral surface, abnormal standard conditions Fig. 2 from Pooranachandran et al., 2016
photoreceptor cell outer segment organization disrupted, abnormal standard conditions Fig. 4 from Raghupathy et al., 2016
photoreceptor outer segment layer decreased size, abnormal standard conditions Fig. 4 from Raghupathy et al., 2016
photoreceptor outer segment layer degenerate, abnormal standard conditions Fig. 4 from Raghupathy et al., 2016
photoreceptor outer segment layer morphology, abnormal standard conditions Fig. 4 from Raghupathy et al., 2016
posterior crista cilium decreased amount, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
posterior crista cilium decreased length, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
pronephric duct cilium absent, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
pronephros cystic, abnormal standard conditions Fig. 3 from Raghupathy et al., 2016
retina cell death increased occurrence, abnormal standard conditions Fig. 7 from Raghupathy et al., 2016
retina central region degenerate, abnormal standard conditions Fig. 5Fig. 6 from Raghupathy et al., 2016
retina central region has fewer parts of type retinal cone cell, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retina central region lacks parts or has fewer parts of type retinal rod cell, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal cone cell zpr-1 labeling decreased amount, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal cone cell decreased amount, abnormal standard conditions Fig. 3Fig. 4 from Pooranachandran et al., 2016
retinal cone cell zpr-1 labeling decreased distribution, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal cone cell decreased length, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal cone cell non-functional, abnormal standard conditions Fig. S4 from Raghupathy et al., 2016
retinal outer nuclear layer absence due to degeneration, abnormal standard conditions Fig. 5 from Raghupathy et al., 2016
retinal outer nuclear layer decreased thickness, abnormal standard conditions Fig. 5 from Raghupathy et al., 2016
retinal outer nuclear layer present, normal standard conditions Fig. 5 from Raghupathy et al., 2016
retinal rod cell decreased amount, abnormal standard conditions Fig. 3 from Pooranachandran et al., 2016
retinal rod cell structure, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal rod cell photoreceptor inner segment rho expression mislocalised, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
retinal rod cell photoreceptor outer segment absent, abnormal standard conditions Fig. 6 from Raghupathy et al., 2016
swim bladder physical object quality, abnormal standard conditions Fig. 3 from Raghupathy et al., 2016
whole organism curved, abnormal standard conditions Fig. 1 from Pooranachandran et al., 2016
whole organism kif3a expression decreased amount, abnormal standard conditions Fig. S2 from Raghupathy et al., 2016
whole organism increased curvature, abnormal standard conditions Fig. 3 from Raghupathy et al., 2016

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