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首页> 外文期刊>Chronobiology international >Ontogeny of the circadian system during embryogenesis in rainbow trout (Oncorhynchus mykyss) and the effect of prolonged exposure to continuous illumination on daily rhythms of per1, clock, and aanat2 expression
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Ontogeny of the circadian system during embryogenesis in rainbow trout (Oncorhynchus mykyss) and the effect of prolonged exposure to continuous illumination on daily rhythms of per1, clock, and aanat2 expression

机译:虹鳟鱼(Oncorhynchus mykyss)胚胎发生过程中昼夜节律系统的个体发育以及长时间持续照射对per1,clock和anat2表达的每日节律的影响

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It is widely held that the development of the circadian system during embryogenesis is important for future survival of an organism. Work in teleosts has been, to date, limited to zebrafish, which provides little insight into the diversity of this system within such a large vertebrate class. In this study, the authors analyzed the diel expression of per1, clock, and aanat2 in unfertilized rainbow trout oocytes and embryos maintained under either a 12:12-h light:dark (LD) cycle or continuous illumination (LL) from fertilization. 24-h profiles in expression were measured at fertilization as well as 8, 21 42, and 57 days postfertilization (dpf). Both per1 and clock were expressed in unfertilized oocytes and all embryonic stages, whereas aanat2 expression was only measureable from 8 dpf. A reduction in both per1 and clock mean expression levels between unfertilized oocytes/0-1 dpf embryos and 8-9 dpf embryos was suggestive of a transition from maternal RNA to endogenous mRNA expression. Although aanat2 expression was not clearly associated with photic conditions, photoperiod treatment did alter the expression of per1 and clock expression/rhythmicity from as early as 8 dpf (per1), which could suggest the presence and functionality of an as yet unidentified "photoreceptor." As a whole, this work demonstrates that clock systems are present and functional during embryonic development in rainbow trout. Further studies of their expression and regulation will help understand how the environment interacts with embryonic development in the species.
机译:人们普遍认为,胚胎发生过程中昼夜节律的发展对于生物体的未来生存至关重要。迄今为止,硬骨鱼类的工作仅限于斑马鱼,而斑马鱼对这种系统在如此庞大的脊椎动物中的多样性知之甚少。在这项研究中,作者分析了未受精的虹鳟卵母细胞和维持在12:12-h光:暗(LD)周期或受精的连续光照(LL)下的胚胎中per1,clock和aanat2的diel表达。在受精以及受精后第8、21、42和57天(dpf)分别测定24小时的表达情况。 per1和Clock均在未受精卵母细胞和所有胚胎阶段表达,而anat2表达仅在8 dpf时可测量。未受精卵母细胞/ 0-1 dpf胚胎和8-9 dpf胚胎之间的per1和Clock平均表达水平降低,表明从母体RNA到内源mRNA表达的转变。尽管anat2的表达与光合条件没有明显联系,但是光周期处理的确从早于8 dpf(per1)时改变了pe​​r1的表达和时钟表达/节律性,这可能暗示了尚不明确的“感光器”的存在和功能。总的来说,这项工作证明了虹鳟的胚胎发育过程中存在着时钟系统并起作用。对其表达和调控的进一步研究将有助于了解环境如何与物种中的胚胎发育相互作用。

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