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Period2 expression pattern and its role in the development of the pineal circadian clock in zebrafish

机译:斑马鱼松果体生物钟的Period2表达模式及其作用

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In zebrafish, pineal arylalkylamine- N -acetyltransferase (zfaanat2 ) mRNA expression begins at 22 h post-fertilization (hpf), and the clock-controlled rhythm of its transcript begins on the third day of development. Here we describe the role of light and of the clock gene, period2 (zper2 ) in the development of this rhythm. In 1-day-old zebrafish embryos, zper2 expression is transiently up-regulated by light in the pineal gland and, to a lesser extent, in other areas of the brain. Expression of zper2 that was not affected by light occurred in the olfactory placode and lactotroph cells of the pituitary primordium. Circadian analysis of pineal zfaanat2 mRNA expression indicated that light exposure is required for proper development of the circadian clock-controlled rhythmic expression of this gene. Knockdown of zPER2 using antisense technology abolished the effect of light on development of the zfaanat2 rhythm in the pineal gland, corroborating the role of zper2 in light entrainment of the circadian oscillator in zebrafish. Further analysis of zper2 expression at earlier stages of development revealed that light exposure at the blastula to mid-segmentation stages also caused a transient increase in zper2 expression. At mid-segmentation, before pineal differentiation, light-induced zper2 expression was enhanced in pineal progenitor cells. Thus, a possible role for early photoreception and light-induced zper2 expression in the development of clock-controlled rhythms remains to be investigated.
机译:在斑马鱼中,松果体芳基烷基胺-N-乙酰基转移酶(zfaanat2)mRNA表达在受精后(hpf)22小时开始,其转录物的时钟控制节律在发育的第三天开始。在这里,我们描述了光和时钟基因period2(zper2)在此节奏发展中的作用。在1天大的斑马鱼胚胎中,光线在松果体中以及在较小程度上在大脑的其他区域中,zper2的表达都被光瞬时上调。不受光影响的zper2的表达发生在垂体原基的嗅斑和泌乳营养细胞中。松果体zfaanat2 mRNA表达的昼夜节律分析表明,适当发育该基因的昼夜节律控制的节律性表达需要光照。使用反义技术敲低zPER2消除了光对松果体zfaanat2节律发展的影响,从而证实了zper2在斑马鱼昼夜节律振荡器的光携带中的作用。在发育早期阶段对zper2表达的进一步分析表明,在囊胚至中段分割阶段的光照也引起zper2表达的瞬时增加。在中段,松果体分化之前,光诱导的zper2表达在松果祖细胞中得到增强。因此,早期受光和光诱导的zper2表达在时钟控制的节奏发展中的可能作用仍有待研究。

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