Piou Vincent, Arafah Karim, Bocquet Michel, Bulet Philippe, Vétillard Angélique
Centre de Recherche sur la Biodiversité et l'Environnement (CRBE), UMR5174, CNRS-Université de Toulouse III-IRD, Université Paul Sabatier, Toulouse, France.
Plateforme BioPark d'Archamps, Archparc, Archamps, France.
PLoS Pathog. 2024 Dec 30;20(12):e1012802. doi: 10.1371/journal.ppat.1012802. eCollection 2024 Dec.
The nutritional physiology of parasites is often overlooked although it is at the basis of host-parasite interactions. In the case of Varroa destructor, one of the major pests of the Western honey bee Apis mellifera, the nature of molecules and tissues ingested by the parasite is still not completely understood. Here, the V. destructor feeding biology was explored through artificial feeding, dissection of the mite's gut and proteomic analyses. More specifically, the proteome of guts extracted from starved mites and honey bee-fed mites was compared to highlight both the parasite proteins likely involved in food processing and the honey bee proteins actually ingested by the mite. We could identify 25 V. destructor candidate proteins likely involved in the parasite digestion. As the host developmental stages infested by the mite are diverse, we also focused on the identity and on the origin of honey bee proteins ingested by the mite when it feeds on larvae, pupae or adults. We highlighted profiles of consumed honey bee proteins and their variations throughout the V. destructor life cycle. These variations matched the ones observed in the honey bee hemolymph, showing that this tissue is an important part of the mite's diet. Based on the variations of abundance of the most consumed honey bee proteins and on their functions, the potential implication of these key candidate nutrients in V. destructor reproduction is also discussed.
尽管寄生虫的营养生理学是宿主与寄生虫相互作用的基础,但常常被忽视。就西方蜜蜂(Apis mellifera)的主要害虫之一狄斯瓦螨(Varroa destructor)而言,该寄生虫摄取的分子和组织的性质仍未完全明确。在此,通过人工饲养、螨肠道解剖和蛋白质组学分析对狄斯瓦螨的取食生物学进行了探究。更具体地说,对从饥饿螨和取食蜜蜂的螨中提取的肠道蛋白质组进行了比较,以突出可能参与食物处理的寄生虫蛋白质以及螨实际摄取的蜜蜂蛋白质。我们能够鉴定出25种可能参与寄生虫消化的狄斯瓦螨候选蛋白质。由于螨侵染的宿主发育阶段各不相同,我们还关注了螨取食幼虫、蛹或成虫时摄取的蜜蜂蛋白质的特性和来源。我们突出了所摄取的蜜蜂蛋白质的概况及其在狄斯瓦螨整个生命周期中的变化。这些变化与在蜜蜂血淋巴中观察到的变化相匹配,表明该组织是螨食物的重要组成部分。基于最常摄取的蜜蜂蛋白质丰度的变化及其功能,还讨论了这些关键候选营养素在狄斯瓦螨繁殖中的潜在作用。