首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Changes of biogenic amine levels in haemolymph during diapausing and non-diapausing status in Pieris brassicae L.
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Changes of biogenic amine levels in haemolymph during diapausing and non-diapausing status in Pieris brassicae L.

机译:菜青虫滞育和非滞育过程中血淋巴中生物胺水平的变化

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During the larval development of Pieris brassicae, photoperiod status induces either direct (non-diapausing) development or diapausing development. Biogenic amines such as dopamine and serotonin and their derivatives may be implicated in the physiological control and adaptation of these insects to different photoperiods. High performance liquid chromatography coupled with electrochemical detection was used to measure biogenic amine concentrations in insect haemolymph in different photoperiod conditions. At the end of the higher photosensitivity phase, dopamine levels were two-fold higher in diapausing (0.914 pmol/microl+/-0.025) as compared to non-diapausing insects (0.415 pmol/microl+/-0.02; P<0.001). Globally, dopamine catabolites are found in higher levels in non-diapausing insects (in prepupa, near seven times more for NADA, and 25 times more for DOPAc), thus indicating a higher dopamine turn-over. Serotonin levels were detected only at the beginning of this instar in diapausing insects but not in direct development insects. During pupal life, dopamine levels were significantly higher in diapausing than in non-diapausing insects (in 3-day pupae, dopamine was 28 times higher), and remained at high levels throughout diapausing life. At the beginning of diapause, serotonin levels were higher in diapausing insects than in non-diapausing insects (in 3-day pupae, serotonin was 13 times higher). These levels decreased in the middle of diapause period, and then increased just before its breaking. Dopamine and serotonin levels presented the typical kinetics of diapause development and may be used as an indicator of the evolution of diapause status.
机译:在菜青虫的幼体发育过程中,光周期状态诱导直接(非滞育)发育或滞育发育。生物胺,例如多巴胺和5-羟色胺及其衍生物,可能与这些昆虫的生理控制和适应不同的光周期有关。高效液相色谱结合电化学检测用于在不同光周期条件下测量昆虫血淋巴中生物胺的浓度。在较高的光敏性阶段结束时,滞育的多巴胺水平(0.914 pmol /μl+/- 0.025)是非滞留性昆虫(0.415 pmol /μl+/- 0.02; P <0.001)。在全球范围内,多巴胺分解代谢物在非定居昆虫中的含量较高(在pre中,NADA的含量高近7倍,DOPAc的含量高25倍),因此表明多巴胺的转换率更高。仅在该衰老的昆虫中检测到血清素水平,而在直接发育的昆虫中未检测到。在p生活中,滞育期间的多巴胺水平显着高于非滞留昆虫(在3天的,中,多巴胺高28倍),并且在整个滞育期间一直保持较高水平。滞育开始时,滞育昆虫中的血清素水平高于非滞留昆虫(在3天的,中,血清素高13倍)。这些水平在滞育期中期下降,然后在断裂之前上升。多巴胺和5-羟色胺水平代表了滞育发展的典型动力学,可以用作滞育状态演变的指标。

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