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Peptidergic control in a fruit crop pest: The spotted-wing drosophila, Drosophila suzukii

机译:果实害虫的多肽控制:斑点翼果蝇,果蝇(Drosophila suzukii)

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摘要

Neuropeptides play an important role in the regulation of feeding in insects and offer potential targets for the development of new chemicals to control insect pests. A pest that has attracted much recent attention is the highly invasive Drosophila suzukii, a polyphagous pest that can cause serious economic damage to soft fruits. Previously we showed by mass spectrometry the presence of the neuropeptide myosuppressin (TDVDHVFLRFamide) in the nerve bundle suggesting that this peptide is involved in regulating the function of the crop, which in adult dipteran insects has important roles in the processing of food, the storage of carbohydrates and the movement of food into the midgut for digestion. In the present study antibodies that recognise the C-terminal RFamide epitope of myosuppressin stain axons in the crop nerve bundle and reveal peptidergic fibres covering the surface of the crop. We also show using an in vitro bioassay that the neuropeptide is a potent inhibitor (EC50 of 2.3 nM) of crop contractions and that this inhibition is mimicked by the non-peptide myosuppressin agonist, benzethonium chloride (Bztc). Myosuppressin also inhibited the peristaltic contractions of the adult midgut, but was a much weaker agonist (EC50 = 5.7 μM). The oral administration of Bztc (5 mM) in a sucrose diet to adult female D. suzukii over 4 hours resulted in less feeding and longer exposure to dietary Bztc led to early mortality. We therefore suggest that myosuppressin and its cognate receptors are potential targets for disrupting feeding behaviour of adult D. suzukii.
机译:神经肽在调节昆虫的摄食中起着重要作用,并为开发新的化学物质以控制害虫提供了潜在的目标。近年来引起高度关注的害虫是高度入侵的铃木果蝇(Drosophila suzukii),它是一种多食性害虫,可对软果造成严重的经济损害。以前我们通过质谱法表明神经束中存在神经肽肌抑制素(TDVDHVFLRFamide),这表明该肽参与调节农作物的功能,这在成年二倍体昆虫中对食物的加工,食物的储存具有重要作用。碳水化合物和食物进入中肠进行消化。在本研究中,可识别作物神经束中肌抑制素染色轴突的C末端RFamide表位的抗体,并揭示覆盖作物表面的肽能纤维。我们还显示了使用体外生物测定法,该神经肽是一种有效的作物收缩抑制剂(EC50为2.3 nM),并且这种抑制作用是由非肽肌抑制素激动剂苄索氯铵(Bztc)模拟的。肌抑制素还抑制成年中肠的蠕动收缩,但激动剂弱得多(EC50 = 5.7μM)。成年雌性铃木D.口服蔗糖饮食中的Bztc(5 mM)超过4小时,导致进食量减少,而饮食中Bztc的暴露时间更长,导致早期死亡。因此,我们建议,肌抑制素及其同源受体是破坏成年铃木成虫摄食行为的潜在靶标。

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