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Impact of diapause on the cuticular hydrocarbons and physiological status of Hippodamia variegata

机译:滞育对 Hippodamia variegata 表皮烃及生理状态的影响

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摘要

The spotted amber ladybird, Hippodamia variegata (Goeze) (Coleoptera: Coccinellidae), is known to be a potent predator of aphids, psyllids, whiteflies, mealybugs, and some butterfly species. This ladybeetle overwinters in the diapausing adult stage. The current study aimed to evaluate the impact of diapause on the energy resources and cuticular hydrocarbons (CHCs) of the female ladybeetle, specifically comparing the changes in glycogen, lipid, and protein contents, and CHCs profile of diapausing and non-diapausing adults. In this study, gas chromatography-mass was used to analyze whole-body extracts of the beetles. Results showed no significant differences between the amount of glycogen, lipid, and protein contents of diapausing and non-diapausing ladybeetle. The CHCs profile of H. variegata consisted of 24 hydrocarbons categorized into 2 groups: linear aliphatic hydrocarbons (n-alkanes) and methyl-branched hydrocarbons (17 molecules), as well as unsaturated cyclic compounds (7 molecules). The n-alkanes, with 14 compounds, were identified as the primary constituents of the CHCs of the ladybeetle. Six molecules were common to non-diapausing and diapausing beetles, 5 were exclusive to non-diapausing beetles, and 13 were exclusive to diapausing beetles. Moreover, we noted a significant difference in the quantity and quality of CHCs between diapausing and non-diapausing beetles, with diapausing beetles synthesizing more CHCs with longer chains. This disparity in CHC profiles was concluded to be an adaptation of H. variegata to survive harsh environmental conditions during diapause.
机译:斑点琥珀瓢虫 Hippodamia variegata (Goeze)(鞘翅目:球虫科)是蚜虫、木虱、粉虱、粉蚧和一些蝴蝶物种的有力捕食者。这种瓢虫在滞育成虫阶段越冬。本研究旨在评估滞育对雌性瓢虫能量资源和表皮碳氢化合物 (CHC) 的影响,特别是比较滞育和非滞育成虫的糖原、脂质和蛋白质含量的变化以及 CHCs 谱。在这项研究中,气相色谱-质量用于分析甲虫的全身提取物。结果显示,滞育和非滞育瓢虫的糖原、脂质和蛋白质含量之间没有显著差异。H. variegata 的 CHCs 谱由 24 种碳氢化合物组成,分为 2 组:线性脂肪族碳氢化合物 (n-烷烃) 和甲基支链碳氢化合物 (17 个分子),以及不饱和环状化合物 (7 个分子)。含有 14 种化合物的正构烷烃被确定为瓢虫 CHC 的主要成分。6 个分子是非滞育和滞育甲虫共有的,5 个分子是非滞育型甲虫独有的,13 个分子是滞育型甲虫独有的。此外,我们注意到滞育甲虫和非滞育甲虫之间 CHCs 的数量和质量存在显著差异,滞育甲虫合成的 CHC 更多,具有更长的链。CHC 谱的这种差异被得出结论,这是 H. variegata 在滞育期间为了在恶劣的环境条件下生存而适应的。

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