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小菜蛾(Delia radicum(L.)双翅目:蝇科)的虫瘿的肽能控制:肌抑制肽的作用。

Peptidergic control of the crop of the cabbage root fly, Delia radicum (L.) Diptera: Anthomyiidae): A role for myosuppressin.

机构信息

School of Biology, University of Leeds, Leeds LS2 9JT, UK; FERA Science, Sand Hutton, York YO41 1LZ, UK.

FERA Science, Sand Hutton, York YO41 1LZ, UK.

出版信息

Gen Comp Endocrinol. 2019 Jul 1;278:50-57. doi: 10.1016/j.ygcen.2018.08.001. Epub 2018 Aug 2.

Abstract

There is much interest in targeting neuropeptide signaling for the development of new and environmentally friendly insect control chemicals. In this study we have focused attention on the peptidergic control of the adult crop of Delia radicum (cabbage root fly), an important pest of brassicas in European agriculture. The dipteran crop is a muscular organ formed from the foregut of the digestive tract and plays a vital role in the processing of food in adult flies. We have shown using direct tissue profiling by MALDI-TOF mass spectrometry that the decapeptide myosuppressin (TDVDHVFLRFamide) is present in the crop nerve bundle and that application of this peptide to the crop potently inhibits the spontaneous contractions of the muscular lobes with an IC of 4.4 × 10 M. The delivery of myosuppressin either by oral administration or by injection had no significant detrimental effect on the adult fly. This failure to elicit a response is possibly due to the susceptibility of the peptide to degradative peptidases that cleave the parent peptide to inactive fragments. Indeed, we show that the crop of D. radicum is a source of neuropeptide-degrading endo- and amino-peptidases. In contrast, feeding benzethonium chloride, a non-peptide agonist of myosuppressin, reduced feeding rate and increased the rate of mortality of adult D. radicum. Current results are indicative of a key role for myosuppressin in the regulation of crop physiology and the results achieved during this project provide the basis for subsequent studies aimed at developing insecticidal molecules targeting the peptidergic control of feeding and food digestion in this pest species.

摘要

人们对靶向神经肽信号传导以开发新的和环保的昆虫控制化学品非常感兴趣。在这项研究中,我们专注于肽对甘蓝根蝇(甘蓝根蝇)成虫作物的控制,甘蓝根蝇是欧洲农业中重要的十字花科害虫。双翅目作物是由消化道前肠形成的肌肉器官,在成年蝇的食物处理中起着至关重要的作用。我们通过 MALDI-TOF 质谱直接组织分析表明,十肽肌抑制素(TDVDHVFLRFamide)存在于作物神经束中,并且该肽应用于作物有力地抑制了肌肉叶的自发收缩,IC 为 4.4×10 M。肌抑制素通过口服或注射给药既不会对成年蝇产生明显的有害影响。这种没有引起反应的可能是由于该肽对降解肽酶的敏感性,这些酶将母体肽切割成无活性片段。事实上,我们表明,甘蓝根蝇的作物是神经肽降解内肽酶和氨基肽酶的来源。相比之下,喂食苯扎氯铵,肌抑制素的非肽激动剂,降低了成虫的摄食率并增加了死亡率。目前的结果表明肌抑制素在调节作物生理学中起着关键作用,本项目取得的结果为随后的研究提供了基础,旨在开发针对该害虫物种的肽控制摄食和食物消化的杀虫分子。

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