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首页> 外文期刊>Journal of Insect Physiology >Effects of starvation on respiratory metabolism and energy metabolism in the cotton bollworm Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae)
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Effects of starvation on respiratory metabolism and energy metabolism in the cotton bollworm Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae)

机译:饥饿对棉铃虫Helicoverpa Armigera(Hubner)(Lepidoptera:Noctuidae)的呼吸代谢和能量代谢的影响

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摘要

Intermittent food shortages are commonly encountered in the wild. To cope with the threat of starvation, insects initiate a suite of behavioral activities and physiological countermeasures. The cotton bollworm, Helicoverpa armigera, is a major agricultural pest worldwide, but how H. armigera modulates its metabolism under starvation remains ambiguous. In the present study, the respiratory rates ((V) over dot(O2); ml g(-1) h(-1)) from the third-larval instar to the pupal stage were first determined. Our results highlighted a transient rise during the larval-larval molt and larval-pupal transition, followed by a sharp decline in the pupal stage and, finally, an upward trend before eclosion. When subjected to food deprivation, the starved larvae experienced a significant decline in the rates of O-2 consumed and CO2 produced, as well as in respiratory quotient (RQ) values, indicative of severe metabolic depression during starvation and a shift of metabolic substrates with prolonged starvation. For metabolic substrate analysis, an apparent decline in triglyceride and glycogen contents was observed in the starved larvae, and the hemolymph trehalose content was significantly reduced throughout starvation. In addition, comparative transcriptome analysis showed that 48 h of larval starvation caused substantial transcriptional regulations in several energetically costly processes, wherein the marked up-regulations were detected in the pathways of glycolysis and fatty acid metabolism. Overall, our work makes a comprehensive study on the respiratory rate and energy metabolism in the starved H. armigera larvae, and provides a deep insight into the physiological adaptive strategies to alleviate nutritional stress.
机译:野外常常遇到间歇性食物短缺。为了应对饥饿的威胁,昆虫发起了一套行为活动和生理对策。棉铃虫,Helicoverpa Armigera,是全球主要农业害虫,但H. Armigera如何在饥饿下调节其新陈代谢仍然存在暧昧。在本研究中,首先确定来自来自第三幼苗瞬间的点(o2); ml g(-1)h(-1)的呼吸速率((v))。我们的结果突出了幼虫 - 幼虫和幼虫蛹过渡期间的瞬态升高,然后在蛹阶段急剧下降,最后,渗透前的上升趋势。当受到食物剥夺时,饥饿的幼虫在产生的O-2消耗量和CO 2的速率下具有显着下降,以及在呼吸型商(RQ)值中,表明在饥饿期间严重代谢抑制和代谢底物的转变长期饥饿。对于代谢底物分析,在饥饿的幼虫中观察到甘油三酯和糖原含量的表观下降,并且在整个饥饿过程中显着降低了血淋巴海藻糖含量。此外,对比转录组分析表明,幼虫饥饿的48小时导致几种能量昂贵的方法引起了大量的转录规定,其中在糖酵解和脂肪酸代谢的途径中检测到明显的上调规则。总体而言,我们的工作对饥饿的H.Armigera幼虫的呼吸率和能量代谢进行了全面的研究,并深入了解减轻营养压力的生理适应性策略。

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