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Plasmodium activates the innate immune response of Anopheles gambiae mosquitoes.

机译:疟原虫激活冈比亚按蚊的先天免疫应答。

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摘要

Innate immune-related gene expression in the major disease vector mosquito Anopheles gambiae has been analyzed following infection by the malaria parasite, Plasmodium berghei. Substantially increased levels of mRNAs encoding the antibacterial peptide defensin and a putative Gram-negative bacteria-binding protein (GNBP) are observed 20-30 h after ingestion of an infected blood-meal, at a time which indicates that this induction is a response to parasite invasion of the midgut epithelium. The induction is dependent upon the ingestion of infective, sexual-stage parasites, and is not due to opportunistic co-penetration of resident gut micro-organisms into the hemocoel. The response is activated following infection both locally (in the midgut) and systemically (in remaining tissues, presumably fat body and/or hemocytes). The observation that Plasmodium can trigger a molecularly defined immune response in the vector constitutes an important advance in our understanding of parasite-vector interactions that are potentially involved in malaria transmission, and extends knowledge of the innate immune system of insects to encompass responses to protozoan parasites.
机译:在疟疾寄生虫伯氏疟原虫感染后,已经分析了主要疾病载体冈比亚按蚊中与先天性免疫相关的基因表达。摄入被感染的血粉后20-30小时,观察到编码抗菌肽防御素和推定的革兰氏阴性细菌结合蛋白(GNBP)的mRNA的水平显着增加,这表明该诱导是对以下物质的反应寄生虫侵袭中肠上皮。诱导依赖于感染性阶段性寄生虫的摄入,而不是由于常驻肠道微生物向血细胞中的渗透性。感染在局部(中肠)和全身(在其余组织中,大概是脂肪体和/或血细胞)感染后被激活。疟原虫可以触发载体中分子定义的免疫应答的观察结果构成了我们对可能与疟疾传播有关的寄生虫-载体相互作用的理解的重要进展,并扩展了昆虫固有免疫系统的知识,从而涵盖了对原生动物寄生虫的反应。

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