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滞育的科罗拉多马铃薯甲虫缺乏短神经肽F I和II。

Diapausing Colorado potato beetles are devoid of short neuropeptide F I and II.

作者信息

Huybrechts Jurgen, De Loof Arnold, Schoofs Liliane

机构信息

Laboratory of Developmental Physiology, Genomics and Proteomics, K.U.Leuven, Naamsestraat 59, B-3000 Leuven, Belgium.

出版信息

Biochem Biophys Res Commun. 2004 May 7;317(3):909-16. doi: 10.1016/j.bbrc.2004.03.136.

Abstract

An extract of head ganglia and retrocerebral complexes of nondiapausing and diapausing Leptinotarsa decemlineata was prepared to characterize regulatory neuropeptides involved in adult diapause by using a differential peptidomics approach. To reduce sample complexity, both extracts were roughly separated by means of an identical chromatographic step. MALDI-TOF MS led to the identification of proctolin, an adipokinetic hormone, and short neuropeptide F I and II in the extract of nondiapausing beetles. In combination with nano-ESI-Q-TOF MS(2) evidence was found for the presence of three pyrokinins, the first to be identified in a coleopteran species. Pyrokinins, involved in the induction of embryonic diapause in Bombyx mori, were present in both physiological conditions suggesting that they are of minor importance in the regulation of adult diapause in the Colorado potato beetle. A striking difference, detected by the differential peptidomics approach, between both neuropeptide profiles was the absence of ions corresponding to the short neuropeptide F (sNPF) related peptides, also known as Led-NPF-I and -II, in the extract of diapausing animals. Therefore, we postulate that "short NPFs" are involved in the regulation of adult diapause, displayed by the Colorado potato beetle.

摘要

制备了非滞育和滞育马铃薯甲虫头部神经节及脑后复合体的提取物,采用差异肽组学方法来鉴定参与成虫滞育的调节性神经肽。为降低样品复杂性,两种提取物均通过相同的色谱步骤进行初步分离。基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)鉴定出非滞育甲虫提取物中的促前胸腺素、一种脂肪动激素以及短神经肽F I和II。结合纳升电喷雾四极杆飞行时间串联质谱(nano-ESI-Q-TOF MS(2)),发现了三种速激肽的存在,这是首次在鞘翅目物种中鉴定出速激肽。在家蚕中参与诱导胚胎滞育的速激肽在两种生理状态下均存在,这表明它们在科罗拉多马铃薯甲虫成虫滞育的调节中不太重要。通过差异肽组学方法检测到,两种神经肽谱之间的一个显著差异是,滞育动物提取物中不存在与短神经肽F(sNPF)相关肽对应的离子,也称为Led-NPF-I和-II。因此,我们推测“短NPF”参与了科罗拉多马铃薯甲虫所表现出的成虫滞育调节。

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