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滞育代谢启动介导的白纹伊蚊雌性幼虫营养。

Transstadial metabolic priming mediated by larval nutrition in female Aedes albopictus mosquitoes.

机构信息

Department of Biology & Biotechnology, Università degli Studi di Pavia, Via Ferrata 9, 27100 Pavia, Italy.

出版信息

J Insect Physiol. 2020 May-Jun;123:104053. doi: 10.1016/j.jinsphys.2020.104053. Epub 2020 Apr 3.

Abstract

Mosquitoes are important vectors of human pathogens, which are transmitted by female mosquitoes via blood-feeding. Larval nutrition can have an important impact on the number of blood meals taken by adult females shortly after emergence, as nutritional deficiencies during the larval stage may result in pre-vitellogenic blood meals, which are not invested into egg development but into the endogenous nutrient reserves of the female. Here, we investigated the impact of nutrient deprivation during the larval stage on adult nutrient metabolism, longevity and blood-seeking behaviour in females of the invasive Asian tiger mosquito Aedes albopictus. We demonstrate that Ae. albopictus females are able to compensate for nutrient deprivation during the larval stage by increasing their development time until sufficient nutrients are acquired. Nonetheless, nutrient-poor larval conditions had a long-lasting priming effect on adult female metabolism, since these females accumulated lower nutrient reserves from carbohydrates and survived longer compared to females reared in nutrient-rich larval conditions. Moreover, nutrient and ATP levels of females from nutrient-poor larval conditions remained stable over a longer timespan without access to additional carbohydrates. This suggests differences in adult female metabolism in response to larval nutrition, with potential impact on the vectorial capacity of female mosquitoes.

摘要

蚊子是人类病原体的重要载体,这些病原体通过雌性蚊子吸血传播。幼虫营养可以对成虫刚出蛹后取食的血液量产生重要影响,因为幼虫期的营养缺乏可能导致预卵黄生成期的血液摄入,这些血液不会用于卵的发育,而是用于雌性的内源性营养储备。在这里,我们研究了幼虫期营养剥夺对入侵亚洲虎蚊 Aedes albopictus 雌性成虫营养代谢、寿命和吸血行为的影响。我们证明,Ae. albopictus 雌性能够通过延长发育时间来弥补幼虫期的营养剥夺,直到获得足够的营养。尽管如此,营养贫乏的幼虫条件对成年雌性代谢有持久的启动效应,因为与在营养丰富的幼虫条件下饲养的雌性相比,这些雌性从碳水化合物中积累的营养储备较少,存活时间更长。此外,营养和 ATP 水平的雌性从营养贫瘠的幼虫条件保持稳定在较长时间内没有获得额外的碳水化合物。这表明了成年雌性代谢对幼虫营养的不同反应,这可能对雌性蚊子的媒介能力产生影响。

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