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Grk1b and Grk7a Both Contribute to the Recovery of the Isolated Cone Photoresponse in Larval Zebrafish

机译:Grk1b和Grk7a都有助于恢复幼虫斑马鱼中孤立的锥体光响应。

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Purpose : To define the functional roles of Grk1 and Grk7 in zebrafish cones in vivo. Methods : Genome editing was used to generate grk7a and grk1b knockout zebrafish. Electroretinogram (ERG) analyses of the isolated cone mass receptor potential and the b-wave were performed in dark-adapted zebrafish using a paired flash paradigm to determine recovery of cone photoreceptors and the inner retina after an initial flash. In addition, psychophysical visual response was measured using the optokinetic response (OKR). Results : ERG analysis demonstrated that deletion of either Grk1b or Grk7a in zebrafish larvae resulted in modestly lower rates of recovery of the isolated cone mass receptor potential from an initial flash compared to wildtype larvae. On the other hand, grk1bsup?/?/sup and grk7asup?/?/sup larvae exhibited a b-wave recovery that was similar to wildtype larvae. We evaluated the OKR and found that deletion of either Grk1b or Grk7a leads to a small decrease in temporal contrast sensitivity and alterations in visual acuity. Conclusions : For the first time, we demonstrate that Grk1b and Grk7a both contribute to visual function in larval zebrafish cones. Since the difference between wildtype and each knockout fish is modest, it appears that either GRK is sufficient for adequate cone visual function.
机译:目的:定义Grk1和Grk7在体内斑马鱼视锥细胞中的功能角色。方法:使用基因组编辑生成grk7a和grk1b敲除斑马鱼。使用配对闪光范例,在暗适应性斑马鱼中进行孤立视锥质量受体电势和b波的视网膜电图(ERG)分析,以确定初次闪光后视锥感光器和内部视网膜的恢复。此外,使用视动反应(OKR)测量心理视觉反应。结果:ERG分析表明,与野生型幼虫相比,斑马鱼幼虫中Grk1b或Grk7a的缺失导致分离的视锥质量受体电位的恢复率略有降低。另一方面,grk1b ?/?和grk7a ?/?幼虫表现出的b波恢复类似于野生型幼虫。我们评估了OKR,发现删除Grk1b或Grk7a会导致时间对比敏感度的小幅下降和视敏度的改变。结论:第一次,我们证明了Grk1b和Grk7a都有助于幼虫斑马鱼视锥细胞的视觉功能。由于野生型和每只基因敲除鱼之间的差异不大,因此似乎任一GRK都足以满足视锥细胞的视功能。

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