Chabanol Estelle, Behrends Volker, Prévot Ghislaine, Christophides George K, Gendrin Mathilde
Microbiota of Insect Vectors Group, Institut Pasteur de Guyane, Cayenne 97306, French Guiana.
Ecole Doctorale Numéro 587, Diversités, Santé, et Développement en Amazonie, Université de Guyane, Cayenne 97337, French Guiana.
Pathogens. 2020 Aug 21;9(9):679. doi: 10.3390/pathogens9090679.
The mosquito microbiota reduces the vector competence of to and affects host fitness; it is therefore considered as a potential target to reduce malaria transmission. While immune induction, secretion of antimicrobials and metabolic competition are three typical mechanisms of microbiota-mediated protection against invasive pathogens in mammals, the involvement of metabolic competition or mutualism in mosquito-microbiota and microbiota- interactions has not been investigated. Here, we describe a metabolome analysis of the midgut of provided with a sugar-meal or a non-infectious blood-meal, under conventional or antibiotic-treated conditions. We observed that the antibiotic treatment affects the tricarboxylic acid cycle and nitrogen metabolism, notably resulting in decreased abundance of free amino acids. Linking our results with published data, we identified pathways which may participate in microbiota- interactions via metabolic interactions or immune modulation and thus would be interesting candidates for future functional studies.
蚊子的微生物群会降低其传播疟原虫的能力并影响宿主健康;因此,它被视为减少疟疾传播的一个潜在靶点。虽然免疫诱导、抗菌物质分泌和代谢竞争是微生物群介导的对哺乳动物体内入侵病原体的三种典型保护机制,但代谢竞争或共生在蚊子 - 微生物群以及微生物群 - 寄生虫相互作用中的作用尚未得到研究。在此,我们描述了在常规或抗生素处理条件下,给按蚊提供糖餐或非感染性血餐时,对其肠道进行的代谢组分析。我们观察到抗生素处理会影响三羧酸循环和氮代谢,特别是导致游离氨基酸丰度降低。将我们的结果与已发表的数据相结合,我们确定了可能通过代谢相互作用或免疫调节参与微生物群 - 寄生虫相互作用的途径,因此这些途径将是未来功能研究的有趣候选对象。