Cheng Christiana L, Flamarique Iñigo Novales
Department of Biological Sciences, Simon Fraser University, British Columbia, Canada.
Vis Neurosci. 2007 May-Jun;24(3):269-76. doi: 10.1017/S0952523807070137. Epub 2007 Jun 26.
The retina of salmonid fishes has two types of cone photoreceptors: single and double cones. At the nuclear level, these cones are distributed in a square mosaic such that the double cones form the sides of the square and the single cones occupy positions at the centre and at the corners of the square. Double cones consist of two members, one having visual pigment protein maximally sensitive to green light (RH2 opsin), the other maximally sensitive to red light (LWS opsin). Single cones can have opsins maximally sensitive to ultraviolet (UV) or blue light (SWS1 and SWS2 opsins, respectively). In Pacific salmonids, all single cones express UV opsin at hatching. Around the time of yolk sac absorption, single cones start switching opsin expression from UV to blue, in an event that proceeds from the ventral to the dorsal retina. This transformation is accompanied by a loss of single corner cones such that the large juvenile shows corner cones and UV opsin expression in the dorsal retina only. Previous research has shown that adult Pacific salmon have corner cones over large areas of retina suggesting that these cones may be regenerated and that they may express UV opsin. Here we used in-situ hybridization with cRNA probes and RT-PCR to show that: (1) all single cones in non-growth zone areas of the retina express blue opsin and (2) double cone opsin expression alternates around the square mosaic unit. Our results indicate that single cone driven UV sensitivity in adult salmon must emanate from stimulation of growth zone areas.
单视锥和双视锥。在细胞核水平,这些视锥呈方形镶嵌分布,双视锥构成正方形的边,单视锥占据正方形中心和角落的位置。双视锥由两个部分组成,一个含有对绿光(RH2视蛋白)敏感度最高的视觉色素蛋白,另一个含有对红光(LWS视蛋白)敏感度最高的视觉色素蛋白。单视锥可以含有对紫外线(UV)或蓝光(分别为SWS1和SWS2视蛋白)敏感度最高的视蛋白。在太平洋鲑科鱼类中,所有单视锥在孵化时都表达UV视蛋白。在卵黄囊吸收前后,单视锥开始将视蛋白表达从UV转换为蓝光,这一过程从视网膜腹侧开始向背侧进行。这种转变伴随着单个角落视锥的消失,以至于大型幼鱼仅在背侧视网膜显示角落视锥和UV视蛋白表达。先前的研究表明,成年太平洋鲑鱼在视网膜的大片区域都有角落视锥,这表明这些视锥可能会再生,并且它们可能表达UV视蛋白。在这里,我们使用cRNA探针原位杂交和逆转录聚合酶链反应来表明:(1)视网膜非生长区的所有单视锥都表达蓝光视蛋白,以及(2)双视锥视蛋白表达在方形镶嵌单元周围交替。我们的结果表明,成年鲑鱼中由单视锥驱动的UV敏感性必定源于生长区的刺激。