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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Circadian regulation of phosphodiesterase 6 genes in zebrafish differs between cones and rods: Implications for photopic and scotopic vision
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Circadian regulation of phosphodiesterase 6 genes in zebrafish differs between cones and rods: Implications for photopic and scotopic vision

机译:斑马鱼中磷酸二酯酶6基因的昼夜凯基酯和杆之间的调节在锥体和棒之间不同:对光敏和施力视觉的影响

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A correlation is known to exist between visual sensitivity and oscillations in red opsin and rhodopsin gene expression in zebrafish, both regulated by the clock gene. This indicates that an endogenous circadian clock regulates behavioural visual sensitivity, apart from the regulation exerted by the pineal organ. However, the specific mechanisms for cones (photopic vision) and rods (scotopic vision) are poorly understood. In this work, we performed gene expression, cosinor and immunohistochemical analyses to investigate other key genes involved in light perception, encoding the different subunits of phosphodiesterase pde6 and transducin G alpha(T), in constant lighting conditions and compared to normal light-dark conditions. We found that cones display prominent circadian oscillations in mRNA levels for the inhibitory subunit gene pde6ha that could contribute to the regulation of photopic sensitivity by preventing overstimulation in photopic conditions. In rods, the mRNA levels of the inhibitory subunit gene pde6ga oscillate under normal conditions and dampen down in constant light but continue oscillating in constant darkness. There is an increase in total relative expression for pde6gb in constant conditions. These observations, together with previous data, suggest a complex regulation of the scotopic sensitivity involving endogenous and non-endogenous components, possibly present also in other teleost species. The G alpha(T) genes do not display mRNA oscillations and therefore may not be essential for the circadian regulation of photosensitivity. In summary, our results support different regulation for the zebrafish photopic and scotopic sensitivities and suggest circadian regulation of pde6ha as a key factor regulating photopic sensitivity, while the regulatory mechanisms in rods appear to be more complex.
机译:已知存在相关性与斑马鱼中的红蛋白酶和罗地素基因表达中的视觉敏感性和振荡之间存在相关性,这两种时钟基因都受到调节。这表明内源性昼夜昼夜时钟调节行为视觉敏感性,除了松果器官施加的调节之外。然而,锥体(光敏视觉)和棒(Scotopic Vision)的具体机制被理解得很差。在这项工作中,我们进行了基因表达,依赖者和免疫组织化学分析,以研究光感觉中涉及的其他关键基因,在恒定的照明条件下编码磷酸二酯酶PDE6的不同亚基和转琥酸氨基α(t),并与正常光暗条件相比。我们发现,锥体在mRNA水平中显示出抑制亚基基因PDE6HA的突出昼夜振荡,这可能通过防止光学条件的过度刺激来促进光敏性灵敏度的调节。在棒中,抑制亚基基因PDE6GA的mRNA水平在正常条件下振荡并抑制恒定光,但在恒定的黑暗中继续振荡。在恒定条件下PDE6GB的总相对表达的总相对表达增加。这些观察结果与先前的数据一起表明了涉及内源性和非内源性组分的潜在肝脏敏感性的复杂调节,也可能存在于其他紧邻的物种中。 Gα(T)基因不显示mRNA振荡,因此对于昼夜节约调节可能不是必需的光敏性。总之,我们的结果支持斑马鱼光敏和施力敏感性的不同调节,并提出PDE6HA的昼夜调节作为调节光学敏感性的关键因素,而杆的调节机制似乎更复杂。

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