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首页> 外文期刊>Entomological Science >Melatonin pathway transmits information to terminate pupal diapause in the Chinese oak silkmoth Antheraea pernyi and through reciprocated inhibition of dopamine pathway functions as a photoperiodic counter
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Melatonin pathway transmits information to terminate pupal diapause in the Chinese oak silkmoth Antheraea pernyi and through reciprocated inhibition of dopamine pathway functions as a photoperiodic counter

机译:褪黑素途径传递信息以终止中国栎蚕mo蛾的di滞育,并通过往复抑制多巴胺途径作为光周期计数器

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The present study investigated the functional involvement of melatonin and dopamine in photoperiodism to terminate pupal diapause in the Chinese oak silkmoth, Antheraea pernyi (Lepidoptera: Saturniidae). Diapause in this long-day (short-night) species is maintained during long nights and can be terminated by exposure to a short-night photoperiod. We observed the effects of melatonin and dopamine and their receptor antagonists on diapause pupae. Melatonin and flupentixol, a dopamine receptor antagonist, terminated pupal diapause even under long-night photoperiods. Dopamine and luzindole, a melatonin receptor antagonist, retarded adult emergence during short nights, whereas melatonin advanced the timing of adult emergence under the short-night photoperiod in a manner dependent on the number of injections. The results of the day-length extension experiment indicated that a change in the photoperiod was immediately detected as mRNA expression of the rate-limiting enzyme of melatonin production. These findings suggest that the melatonin pathway transmits information on the photoperiod to terminate the pupal diapause of A.pernyi. The melatonin pathway also inhibited the dopamine production system, and the dopamine pathway inhibited the melatonin production system. We propose an insect model of the photoperiodic counter driven by mutual inhibition between the melatonin and dopamine pathways.
机译:本研究调查了褪黑素和多巴胺在光周期中的功能参与,以终止中国栎蚕蛾(Antheraea pernyi)(鳞翅目:Saturniidae)的di滞育。在漫长的夜晚中,这种长日(短夜)物种的滞育得以维持,可以通过暴露于短夜光周期而终止。我们观察了褪黑素和多巴胺及其受体拮抗剂对滞育p的影响。褪黑素和多巴胺受体拮抗剂氟喷托醇即使在长时间的光周期下也能终止小儿滞育。多巴胺和褪黑激素受体拮抗剂Luzindole可以在短夜内延迟成虫的出现,而褪黑素则取决于注射次数,从而在短夜光周期下提前了成年的时间。日延长实验的结果表明,光周期的变化被立即检测为褪黑激素产生限速酶的mRNA表达。这些发现表明,褪黑激素途径在光周期中传递信息以终止pernyi的the滞育。褪黑激素途径也抑制多巴胺产生系统,而多巴胺途径抑制褪黑素产生系统。我们提出了褪黑素和多巴胺途径之间相互抑制驱动的光周期计数器的昆虫模型。

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