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斑马鱼(Danio rerio)视觉的发育。

The development of vision in the zebrafish (Danio rerio).

作者信息

Easter S S, Nicola G N

机构信息

Department of Biology, University of Michigan, 830 N. University Avenue, Ann Arbor, Michigan, 48109-1048, USA.

出版信息

Dev Biol. 1996 Dec 15;180(2):646-63. doi: 10.1006/dbio.1996.0335.

Abstract

We studied the development and maturation of the visual system by determining when zebrafish begin to see and to move their eyes. This information was correlated with the time courses of the development of the retina, the retinofugal projection, the retinal image, and the extraocular muscles, to obtain an integrated picture of early visual development. Two visual behaviors were monitored over 48-96 hr postfertilization (hpf). The startle response (body twitch) was evoked by an abrupt decrease in light intensity. The optokinetic response (tracking eye movements) was evoked by rotation of a striped drum. Visually evoked startle developed over 68-79 hpf, more than 20 hr after the onset of a touch-evoked startle. It was not seen in eyeless fish, excluding a role for nonretinal light senses. Tracking eye movements developed over 73-80 hpf. They were always in the direction of drum rotation, even when the fish had been light deprived from blastula stage, ruling out a "trial and error" period of learning to track the drum. The image formed by the ocular lens was examined in intact fish made transparent by suppressing the formation of melanin. The eye was initially far sighted and gradually improved, so that by 72 hpf the image plane coincided with the photoreceptor layer. The extraocular muscles assumed their adult configuration between 66 and 72 hpf. Thus, the retinal image and functional extraocular muscles appeared nearly simultaneously with the onset of tracking eye movements and probably represent the last events in the construction of this behavior.

摘要

我们通过确定斑马鱼何时开始看见并移动眼睛,研究了视觉系统的发育和成熟过程。这些信息与视网膜、视网膜神经投射、视网膜图像和眼外肌的发育时间进程相关联,以获得早期视觉发育的整体情况。在受精后48 - 96小时(hpf)内监测了两种视觉行为。惊吓反应(身体抽搐)由光强度的突然降低诱发。视动反应(跟踪眼球运动)由条纹鼓的旋转诱发。视觉诱发的惊吓反应在68 - 79 hpf时出现,比触觉诱发的惊吓反应开始后超过20小时。在无眼鱼中未观察到这种反应,排除了非视网膜光感觉的作用。跟踪眼球运动在73 - 80 hpf时出现。它们总是朝着鼓旋转的方向,即使鱼从囊胚期开始就处于无光环境中,排除了学习跟踪鼓的“试错”期。通过抑制黑色素的形成使完整的鱼变得透明,从而检查了晶状体形成的图像。眼睛最初是远视的,随后逐渐改善,到72 hpf时图像平面与光感受器层重合。眼外肌在66至72 hpf之间呈现出成体形态。因此,视网膜图像和功能性眼外肌几乎与跟踪眼球运动的开始同时出现,并且可能代表了这种行为构建中的最后事件。

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