首页> 外文期刊>The Journal of Experimental Biology >Diapause-associated changes in the lipid and metabolite profiles of the Asian tiger mosquito, Aedes albopictus
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Diapause-associated changes in the lipid and metabolite profiles of the Asian tiger mosquito, Aedes albopictus

机译:亚述奥尔科斯岛亚洲虎蚊虫的脂质和代谢物轮廓的延展相关变化

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摘要

Diapause is an alternative life-history strategy that allows organisms to enter developmental arrest in anticipation of unfavorable conditions. Diapause is widespread among insects and plays a key role in enhancing overwinter survival as well as defining the seasonal and geographic distributions of populations. Next-generation sequencing has greatly advanced our understanding of the transcriptional basis for this crucial adaptation but less is known about the regulation of embryonic diapause physiology at the metabolite level. Here, we characterized the lipid and metabolite profiles of embryonic diapause in the Asian tiger mosquito, Aedes albopictus. We used an untargeted approach to capture the relative abundance of 250 lipids and 241 metabolites. We observed adjustments associated with increased energy storage, including an accumulation of lipids, the formation of larger lipid droplets and increased lipogenesis, as well as metabolite shifts suggesting reduced energy utilization. We also found changes in neuroregulatory- and insulin-associated metabolites with potential roles in diapause regulation. Finally, we detected a group of unidentified, diapause-specific metabolites which have physical properties similar to those of steroids/steroid derivatives and may be associated with the ecdysteroidal regulation of embryonic diapause in A. albopictus. Together, these results deepen our understanding of the metabolic regulation of embryonic diapause and identify key targets for future investigations.
机译:延迟是一种替代的寿命历史策略,使有机体能够在预期不利条件下进入发展逮捕。延迟在昆虫中普遍存在,并在提高冬季生存以及定义人口季节性和地理分布方面发挥关键作用。下一代测序极大地推进了我们对这种至关重要的转录基础的理解,但较少是关于在代谢物水平下调节胚胎延展生理学的调控。在这里,我们以亚述奥尔科特州亚述毒素蚊子的胚胎延伸的脂质和代谢物谱。我们使用了未明确的方法来捕获250个脂质和241种代谢物的相对丰度。我们观察到与增加的能量储存相关的调整,包括脂质的积累,形成较大的脂液滴和增加的脂肪生成,以及代谢物变化,表明能量利用降低。我们还发现神经调节和胰岛素相关代谢物的变化,具有潜在作用在延展调节中。最后,我们发现了一组不明的延展特异性代谢物,其具有与类固醇/类固醇衍生物类似的物理性质,并且可能与A. albopictus的胚胎延伸的Ecdysteroid调节相关。这些结果加深了我们对胚胎延展的代谢调节的理解,并确定未来调查的关键目标。

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