首页> 外文期刊>The Journal of Experimental Biology >Chromatic organization of cone photoreceptors in the retina of rainbow trout: single cones irreversibly switch from UV (SWS1) to blue (SWS2) light sensitive opsin during natural development
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Chromatic organization of cone photoreceptors in the retina of rainbow trout: single cones irreversibly switch from UV (SWS1) to blue (SWS2) light sensitive opsin during natural development

机译:虹鳟视网膜中视锥细胞感光体的色组织:在自然发育过程中,单个视锥细胞不可逆地从紫外线(SWS1)转换为蓝色(SWS2)光敏视蛋白。

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摘要

The retinas of salmonid fishes have single and double cones arranged in square to row formations termed mosaics. The square mosaic unit is formed by four double cones that make the sides of the square with a single (centre) cone in the middle, and a single (corner) cone at each corner of the square when present. Previous research using coho salmon-derived riboprobes on four species of anadromous Pacific salmon has shown that all single cones express a SWS1 (UV sensitive) visual pigment protein (opsin) at hatching, and that these cones switch to a SWS2 (blue light sensitive) opsin during the juvenile period. Whether this opsin switch applies to non-anadromous species, like the rainbow trout, is under debate as species-specific riboprobes have not been used to study opsin expression during development of a trout. As well, a postulated recovery of SWS1 opsin expression in the retina of adult rainbow trout, perhaps via a reverse process to that occurring in the juvenile, has not been investigated. Here, we used in situ hybridization with species-specific riboprobes and microspectrophotometry on rainbow trout retina to show that: (1) single cones in the juvenile switch opsin expression from SWS1 to SWS2, (2) this switch is not reversed in the adult, i.e. all single cones in the main retina continue to express SWS2 opsin, and (3) opsin switches do not occur in double cones: each member expresses one opsin, maximally sensitive to green (RH2) or red (LWS) light. The opsin switch in the single cones of salmonid fishes may be a general process of chromatic organization that occurs during retinal development of most vertebrates.
机译:鲑鱼鱼的视网膜有单锥和双锥,排列成正方形到行,称为镶嵌。方形镶嵌单元由四个双圆锥组成,四个圆锥构成正方形的侧面,中间有一个(中心)圆锥,正方形的每个角都有一个(角)圆锥。先前使用银大麻哈鱼的核糖核蛋白对四种种类的太平洋鲑鱼进行的研究表明,所有单个视锥细胞在孵化时均表达SWS1(对紫外线敏感)视觉色素蛋白(视蛋白),并且这些视锥细胞切换为SWS2(对蓝光敏感)少年时期的视蛋白。这种视蛋白开关是否适用于非虹吸物种,例如虹鳟,由于在鳟鱼的发育过程中尚未使用特定物种的核糖核蛋白来研究视蛋白表达,这一点尚有争议。同样,尚未研究过成年虹鳟鱼视网膜中SWS1视蛋白表达的假定恢复,可能是通过与少年发生的过程相反的过程进行的。在这里,我们使用了与物种特异的核糖核酸进行的原位杂交,并在虹鳟鱼视网膜上进行了显微分光光度法,结果表明:(1)青少年视锥蛋白从SWS1到SWS2的单个视锥细胞表达,(2)在成年人中这种视锥细胞的表达没有逆转,也就是说,主视网膜中的所有单个视锥细胞都继续表达SWS2视蛋白,而(3)视蛋白开关不会出现在双视锥细胞中:每个成员表达一个视蛋白,对绿色(RH2)或红色(LWS)的光最大敏感。鲑鱼单锥体中的视蛋白开关可能是大多数脊椎动物视网膜发育过程中发生的一般的有色组织过程。

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