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A Behavioral Assay to Measure Responsiveness of Zebrafish to Changes in Light Intensities

机译:行为分析用于测量斑马鱼对光强度变化的响应能力

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摘要

The optokinetic reflex (OKR) is a basic visual reflex exhibited by most vertebrates and plays an important role in stabilizing the eye relative to the visual scene. However, the OKR requires that an animal detect moving stripes and it is possible that fish that fail to exhibit an OKR may not be completely blind. One zebrafish mutant, the no optokinetic response c (nrc) has no OKR under any light conditions tested and was reported to be completely blind. Previously, we have shown that OFF-ganglion cell activity can be recorded in these mutants. To determine whether mutant fish with no OKR such as the nrc mutant can detect simple light increments and decrements we developed the visual motor behavioral assay (VMR). In this assay, single zebrafish larvae are placed in each well of a 96-well plate allowing the simultaneous monitoring of larvae using an automated video-tracking system. The locomotor responses of each larva to 30 minutes light ON and 30 minutes light OFF were recorded and quantified. WT fish have a brief spike of motor activity upon lights ON, known as the startle response, followed by return to lower-than baseline activity, called a freeze. WT fish also sharply increase their locomotor activity immediately following lights OFF and only gradually (over several minutes) return to baseline locomotor activity. The nrc mutants respond similarly to light OFF as WT fish, but exhibit a slight reduction in their average activity as compared to WT fish. Motor activity in response to light ON in nrc mutants is delayed and sluggish. There is a slow rise time of the nrc mutant response to light ON as compared to WT light ON response. The results indicate that nrc fish are not completely blind. Because teleosts can detect light through non-retinal tissues, we confirmed that the immediate behavioral responses to light-intensity changes require intact eyes by using the chokh (chk) mutants, which completely lack eyes from the earliest stages of development. In our VMR assay, the chk mutants exhibit no startle response to either light ON or OFF, showing that the lateral eyes mediate this behavior. The VMR assay described here complements the well-established OKR assay, which does not test the ability of zebrafish larvae to respond to changes in light intensities. Additionally, the automation of the VMR assay lends itself to high-throughput screening for defects in light-intensity driven visual responses.
机译:视动反射(OKR)是大多数脊椎动物表现出的基本视觉反射,相对于视觉场景,它在稳定眼睛方面起着重要作用。但是,OKR要求动物检测运动条纹,而未显示OKR的鱼可能不会完全失明。一个斑马鱼突变体,没有视动反应c(nrc)在任何光照条件下都没有OKR,据报道是完全失明的。以前,我们已经表明,OFF神经节细胞活性可以​​记录在这些突变体中。为了确定没有OKR的突变鱼类(例如nrc突变体)是否可以检测到简单的光增量和减量,我们开发了视觉运动行为分析(VMR)。在该测定中,将单个斑马鱼幼虫放置在96孔板的每个孔中,从而可以使用自动化视频跟踪系统同时监视幼虫。记录并定量每个幼虫对30分钟光亮和30分钟光灭的运动响应。 WT鱼在灯亮时会有短暂的运动活动高峰,称为惊吓反应,然后恢复到低于基线的活动,称为冻结。 WT鱼在灯熄灭后也立即急剧增加其运动能力,仅逐渐(在几分钟内)恢复到基线运动能力。 nrc突变体对淡灭的反应与野生型鱼类相似,但与野生型鱼类相比,其平均活性略有降低。在nrc突变体中,响应于光ON的运动活动被延迟和缓慢。与WT灯打开响应相比,nrc突变体对灯打开的响应上升时间较慢。结果表明,nrc鱼并非完全失明。因为硬骨鱼可以通过非视网膜组织检测光,所以我们证实,通过使用chokh(chk)突变体,对光强度变化的即时行为响应需要完整的眼睛,而这些突变体从最早的发育阶段就完全缺乏眼睛。在我们的VMR分析中,chk突变体对光的开或关均不表现出惊吓反应,表明侧眼介导了这种行为。这里描述的VMR测定法是完善的OKR测定法的补充,OKR测定法不测试斑马鱼幼虫对光强度变化的反应能力。此外,VMR分析的自动化有助于对光强度驱动的视觉反应中的缺陷进行高通量筛选。

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