首页> 外文期刊>Archives of Insect Biochemistry and Physiology >Dopamine and serotonin in the larval CNS of a drosophilid fly, Chymomyza costata: are they involved in the regulation of diapause?
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Dopamine and serotonin in the larval CNS of a drosophilid fly, Chymomyza costata: are they involved in the regulation of diapause?

机译:嗜果蝇蝇(Chymomyza costata)幼虫中枢神经系统中的多巴胺和5-羟色胺:它们是否参与滞育的调节?

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Developmental profiles of dopamine (DA) and serotonin (5-hydroxytryptamine, 5-HT) in the larval CNS of C. costata were measured by HPLC using electrochemical detection. Larvae of two strains, wild-type (W) and nondiapause mutant (M), were maintainedeither under long-day (LD, inducing pupariation) or short-day (SD, inducing diapause in W-strain) photoperiods. The levels of DA ranged from 10 fmol/CNS (early 3rd instar larvae) to 60 fmol/CNS (150-day-old diapausing larvae); the range for 5-HT was from 10 fmol/CNS to 75 fmol/CNS in the same larvae. During the 3rd larval instar, which is the decisive stage for photoperiodic induction of diapause, no differences were found in DA developmental profiles between different strains or conditions. Some differences were found in 5-HT developmental profiles, but only after the end of sensitive stage, and were therefore regarded as insignificant for regulation of developmental mode. Similarly, no clear correlations between the developmental profiles of DA and5-HT and the course of developmental changes during the maintenance and termination of a few-month-long larval diapause were observed. Furthermore, the DA and 5-HT levels in the CNS were pharmacologically manipulated by feeding the larvae with either precursors or enzyme inhibitors of DA and 5-HT biosynthesis. Although retardations of growth and development were observed, the treated larvae retained full capacity for the photoperiodic response, irrespective of the level of DA or 5-HT in their CNS. Larvae with their 5-HT depleted to trace levels survived and were capable of diapause induction, maintenance, and termination. Depletion of DA to trace levels resulted in 100% mortality. Collectively, the present study indicated that 5-HT in the CNS is dispensable for the photoperiodic response in C. costata. More information is needed to elucidate the potential role of DA.
机译:通过HPLC使用电化学检测法测定肋C鱼幼虫CNS中多巴胺(DA)和5-羟色胺(5-羟色胺,5-HT)的发育情况。野生型(W)和非滞育突变体(M)的两种菌株的幼虫在长日(LD,诱导成par)或短日(SD,诱导W滞育)光周期下维持。 DA的水平范围从10 fmol / CNS(三龄初期幼虫)到60 fmol / CNS(150天大的滞育幼虫);在同一幼虫中,5-HT的范围从10 fmol / CNS到75 fmol / CNS。在第三龄幼虫期(这是光周期诱导滞育的决定性阶段)期间,在不同菌株或条件之间的DA发育概况中未发现差异。在5-HT的发育过程中发现了一些差异,但仅在敏感阶段结束后才发现,因此被认为对调节发育方式没有影响。同样,在维持和终止几个月大的幼虫滞育期间,DA和5-HT的发育曲线与发育变化的过程之间也没有明显的相关性。此外,通过给幼虫喂食DA和5-HT生物合成的前体或酶抑制剂,可在药理学上控制CNS中的DA和5-HT水平。尽管观察到生长和发育的迟缓,但无论幼虫中枢神经系统中DA或5-HT的水平如何,处理过的幼虫都具有完整的光周期反应能力。其5-HT消耗至痕量水平的幼虫存活下来,能够滞育诱导,维持和终止。 DA消耗至痕量水平可导致100%的死亡率。总体而言,本研究表明中枢神经系统中的5-HT对于哥氏梭菌的光周期反应是必不可少的。需要更多信息来阐明DA的潜在作用。

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