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首页> 外文期刊>The Journal of Comparative Neurology >Innervation of dromyosuppressin (DMS) immunoreactive processes and effect of DMS and benzethonium chloride on the Phormia regina (Meigen) crop.
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Innervation of dromyosuppressin (DMS) immunoreactive processes and effect of DMS and benzethonium chloride on the Phormia regina (Meigen) crop.

机译:肌萎缩抑制素(DMS)免疫反应过程的神经支配以及DMS和苄索氯铵对里弗氏菌(Meigen)作物的影响。

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摘要

Antibody to the dipteran myosuppressin peptide, dromyosuppressin, TDVDHVFLRFamide, stained cells and fibers in the brain, optic lobes, subesophageal ganglion, and thoracico-abdominal ganglion of the blow fly, Phormia regina (Meigen). Dromyosuppressin-like immunoreactive fibers were detected in the cardiac recurrent nerve, hypocerebral ganglion/corpora cardiaca complex, crop duct, and crop. In order to explore the mechanisms involved in regulating crop movement, we established an in vitro bioassay. The basal rate of crop movement was 50.8 +/- 1.5 contractions per minute. Application of 1 microl of saline to the crop did not significantly affect the rate of movement compared to the basal rate (46.1 +/- 1.1 contractions per minute, P < 0.05). Application of 1 microl 10(-6) M dromyosuppressin or 1 microl 10(-3) M benzethonium chloride to the crop slowed the rate to 2.2 +/- 0.2 and 6.1 +/- 0.7 contractions per minute, respectively. Although other data have previously been interpreted to suggest that dipteran crop contractions do not include a neural component, the neuropeptide dromyosuppressin affected P. regina crop motility. Innervation of the crop and crop duct by dromyosuppressin immunoreactive processes that originated in the central nervous system and the effect of dromyosuppressin on crop muscle contractions suggest that dromyosuppressin is released locally to modulate crop contractions and that crop motility is under neural regulation. Myosuppressins isolated from numerous insects have a high degree of structure identity and reduce spontaneous muscle contractions of the hindgut, oviduct, and heart. Benzethonium chloride, previously identified as a myosuppressin agonist on the cockroach hindgut and locust oviduct, mimicked the effect of dromyosuppressin on the crop. This suggests that structural requirements for myosuppressin receptor binding in the cockroach hindgut, locust oviduct, and fruit fly crop are similar. Copyright 2000 Wiley-Liss, Inc.
机译:二倍体肌抑制素肽,屈肌抑制素,TDVDHVFLRF酰胺,脑中染色的细胞和纤维,视裂叶,食管下神经节和吹蝇的胸腹神经节的抗体,Meorgen。在心脏递归神经,下脑神经节/ corp体复合体,农作物导管和农作物中检测到了类肌抑制素样免疫反应纤维。为了探索调节作物运动的机制,我们建立了体外生物测定法。作物运动的基础速率为每分钟50.8 +/- 1.5次收缩。与基础速率(每分钟46.1 +/- 1.1收缩,P <0.05)相比,在作物上施用1微升盐水不会显着影响运动速率。在农作物上施用1微升10(-6)M屈菌素加压素或1微升10(-3)M苄索氯铵可将速率分别减慢至每分钟2.2 +/- 0.2和6.1 +/- 0.7收缩。尽管以前已经解释了其他数据,以表明二萜类植物的收缩不包括神经成分,但神经肽类纤溶酶抑制素会影响里贾斯疟原虫的作物运动。起源于中枢神经系统的Dromyosuppressin免疫反应过程对作物和作物导管的神经支配以及Dromyosuppressin对作物肌肉收缩的影响表明,Dromyosuppressin在局部释放以调节作物收缩,并且作物的运动受神经调节。从众多昆虫中分离出的肌抑制素具有高度的结构同一性,并减少后肠,输卵管和心脏的自发性肌肉收缩。苄索氯铵以前被认为是蟑螂后肠和蝗虫输卵管上的一种肌抑制素激动剂,它模仿了Dromyosuppressin对农作物的作用。这表明蟑螂后肠,蝗虫输卵管和果蝇作物中对肌抑制素受体结合的结构要求相似。版权所有2000 Wiley-Liss,Inc.

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