Szamier R B, Ripps H
J Comp Neurol. 1983 Mar 20;215(1):51-62. doi: 10.1002/cne.902150105.
Earlier studies have shown that visual function in skate is subserved solely by the rod mechanism and that the retina of this elasmobranch contains only rod photoreceptors. Nevertheless, the skate retina is capable of responding to levels of illumination that extend well into the photopic range, and we have detected in histological sections (usually from younger animals) small, proximally displaced, conelike photoreceptors which possibly represent another class of visual cell. However, ultrastructural and histochemical studies showed that the membranous discs of the outer segments of these cells were isolated from the plasma membrane, and that their synaptic terminals appeared immature and unlike those usually associated with cone receptors. In addition, the pattern of incorporation of 3H-fucose, as revealed by radioautography, was similar for both the rods and the smaller visual cells; i.e., the label was concentrated along the basal discs of the outer segment. When we examined the disc-shedding behavior of the visual cells in skates entrained for 2 weeks or longer to a 12-hour light:12-hour dark cycle, enhanced phagocytic activity was seen only following light onset; there was no significant increase following light offset. On the available evidence, it seems reasonable to conclude that the small visual cells are rods that have recently differentiated, and are growing and being incorporated into the photoreceptor layer of the retina.
早期研究表明,鳐鱼的视觉功能仅由视杆机制维持,且这种板鳃亚纲动物的视网膜仅包含视杆光感受器。然而,鳐鱼视网膜能够对延伸至明视范围的光照水平做出反应,并且我们在组织学切片(通常来自较年幼的动物)中检测到了小的、向近端移位的锥形光感受器,它们可能代表另一类视觉细胞。然而,超微结构和组织化学研究表明,这些细胞外段的膜盘与质膜分离,并且它们的突触终末看起来不成熟,与通常与视锥感受器相关的突触终末不同。此外,放射自显影显示,3H-岩藻糖的掺入模式在视杆和较小的视觉细胞中相似;即,标记物集中在外段的基底膜盘上。当我们检查在12小时光照:12小时黑暗周期中饲养2周或更长时间的鳐鱼视觉细胞的膜盘脱落行为时,仅在光照开始后观察到吞噬活性增强;光照结束后没有显著增加。根据现有证据,得出小视觉细胞是最近分化、正在生长并被纳入视网膜光感受器层的视杆这一结论似乎是合理的。