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Melanopsin and rod-cone photoreceptive systems account for all major accessory visual functions in mice

机译:黑色素和视锥细胞感光系统是小鼠所有主要辅助视觉功能的原因

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摘要

In the mammalian retina, besides the conventional rod-cone system, a melanopsin-associated photoreceptive system exists that conveys photic information for accessory visual functions such as pupillary light reflex and circadian photo-entrainment. On ablation of the melanopsin gene, retinal ganglion cells that normally express melanopsin are no longer intrinsically photosensitive. Furthermore, pupil reflex, light-induced phase delays of the circadian clock and period lengthening of the circadian rhythm in constant light are all partially impaired. Here, we investigated whether additional photoreceptive systems participate in these responses. Using mice lacking rods and cones, we measured the action spectrum for phase-shifting the circadian rhythm of locomotor behaviour. This spectrum matches that for the pupillary light reflex in mice of the same genotype, and that for the intrinsic photosensitivity of the melanopsin-expressing retinal ganglion cells. We have also generated mice lacking melanopsin coupled with disabled rod and cone photo-transduction mechanisms. These animals have an intact retina but fail to show any significant pupil reflex, to entrain to light/dark cycles, and to show any masking response to light. Thus, the rod-cone and melanopsin systems together seem to provide all of the photic input for these accessory visual functions.
机译:在哺乳动物的视网膜中,除了常规的视锥锥系统以外,还存在着与黑视蛋白相关的感光系统,该系统能够传达光信息,用于辅助视觉功能,例如瞳孔光反射和昼夜节律。在消融黑素蛋白基因后,正常表达黑素蛋白的视网膜神经节细胞不再固有地具有光敏性。此外,在恒定光下,瞳孔反射,生物钟的光诱导相位延迟和生物钟的周期延长都被部分削弱。在这里,我们调查了其他感光系统是否参与了这些反应。使用缺乏杆和锥的小鼠,我们测量了运动行为的昼夜节律相移的作用谱。该光谱与相同基因型小鼠的瞳孔光反射光谱和表达黑视蛋白的视网膜神经节细胞固有的光敏光谱相匹配。我们还产生了缺乏黑素和失能的杆和锥光转导机制的小鼠。这些动物具有完整的视网膜,但无法显示出任何明显的瞳孔反射,无法夹带亮/暗周期,也不会表现出对光的任何掩盖反应。因此,视锥细胞和黑视蛋白系统一起似乎为这些辅助视觉功能提供了所有的光输入。

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