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首页> 外文期刊>Journal of Insect Physiology >Clock genes period and timeless are rhythmically expressed in brains of newly hatched, photosensitive larvae of the fly, Sarcophaga crassipalpis
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Clock genes period and timeless are rhythmically expressed in brains of newly hatched, photosensitive larvae of the fly, Sarcophaga crassipalpis

机译:在新孵化的果蝇光敏幼虫Sarcophaga crassipalpis的大脑中有节奏地表达时钟基因周期和永恒

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While roles of the clock genes period (per) and timeless (tim) are relatively well understood in relation to circadian clocks, their potential roles in insect photoperiodism remain enigmatic. In this study, the expression of per and tim genes under two contrasting photoperiods is described in the central nervous system of photoperiodically sensitive, newly hatched first instar larvae of the flesh fly, Sarcophaga crassipalpis. Using qPCR, diel oscillations were observed in the mRNA levels of both genes under long-day (15 h light:9 h dark, promotes direct development) and short-day conditions (11 h light:13 h dark, induces pupal diapause). Peak per and tim mRNA oscillations were closely associated with the light/dark transition. The conspicuous difference between the two photoperiodic conditions was that the sharp increase in per and tim mRNA abundance occurred during the light phase under long days but during the dark phase under short days. The diel oscillations were, at least in part, driven by an endogenous component, as demonstrated by transferring larvae to continuous darkness. The cells displaying Tim- and Per-like immunoreactivities (Tim- and Per-LIRs) were localized using anti-Drosophila-Per and anti-Chymomyza-Tim antibodies. Per-LIR and Tim-LIR co-localized in three groups of cells in each brain hemisphere. Two other groups, one in the brain hemispheres and the other in the fused ventral nerve ganglion, expressed only the Per-LIR.
机译:虽然相对于生物钟相对理解钟基因周期(per)和永恒(tim)的作用,但它们在昆虫光周期中的潜在作用仍然是未知的。在这项研究中,per和tim基因在两个不同的光周期下的表达在光周期敏感的,刚孵出的果蝇第一龄幼虫Sarcophaga crassipalpis的中枢神经系统中进行了描述。使用qPCR,在长日(15 h光照:9 h黑暗,促进直接发育)和短日条件(11 h光照:13 h黑暗,引起p滞育)下,两个基因的mRNA水平都观察到了狄尔振荡。 per和tim mRNA的峰值振荡与明暗过渡密切相关。两种光周期条件之间的显着差异是,per和tim mRNA的丰度急剧增加发生在长时期的光照阶段,而在短时期的黑暗阶段。 diel振荡至少部分地由内源性成分驱动,这通过将幼虫转移到连续的黑暗中来证明。使用抗果蝇-Per和抗Chymomyza-Tim抗体定位显示Tim和Per样免疫反应性(Tim和Per-LIR)的细胞。 Per-LIR和Tim-LIR共定位在每个脑半球的三组细胞中。另外两个组,一个在大脑半球,另一个在融合的腹神经节中,仅表达​​Per-LIR。

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