Department of the Pathogenic Biology, The Third Military Medical University, Chongqing 400038, PR China.
Exp Parasitol. 2013 Aug;134(4):460-5. doi: 10.1016/j.exppara.2013.04.003. Epub 2013 May 3.
Blocking transmission of malaria is a reliable way to control and eliminate infection. However, in-depth knowledge of the interaction between Plasmodium and mosquito is needed. Studies suggest that innate immunity is the main mechanism inhibiting development of malaria parasites in the mosquito. Recent studies have found that use of antibiotics that inhibit the mosquito gut flora can reduce the immune response of Anopheles gambiae, thereby contributing to the development of malaria parasites. In our study, we used the non susceptible model of Anopheles dirus-Plasmodium yoelii to explore the effect of Anopheles intestinal flora on the natural resistance of A. dirus to P. yoelii. We found that in mosquitoes infected with Plasmodium, the intestinal flora can regulate expression of thioester-containing protein (TEP1) via an RNAi gene-silencing approach. Our results suggest that in the absence of TEP1, the natural microbiota cannot suppress the development of P. yoelii in A. dirus. This suggests that AdTEP1 plays an important role in the resistance of A. dirus to P. yoelii. The intestinal flora may modulate the development of P. yoelii in A. dirus by regulating TEP1 expression.
阻断疟疾传播是控制和消除感染的可靠方法。然而,需要深入了解疟原虫和蚊子之间的相互作用。研究表明,先天免疫是抑制疟原虫在蚊子中发育的主要机制。最近的研究发现,使用抑制蚊肠道菌群的抗生素可以降低冈比亚按蚊的免疫反应,从而促进疟原虫的发育。在我们的研究中,我们使用了不易感的安蚊 - 约氏疟原虫模型来探索蚊肠道菌群对安蚊天然抗疟原虫能力的影响。我们发现,在感染疟原虫的蚊子中,肠道菌群可以通过 RNAi 基因沉默方法调节硫酯蛋白 (TEP1) 的表达。我们的结果表明,在缺乏 TEP1 的情况下,天然微生物群无法抑制约氏疟原虫在安蚊中的发育。这表明 AdTEP1 在安蚊抗约氏疟原虫中发挥重要作用。肠道菌群可能通过调节 TEP1 的表达来调节约氏疟原虫在安蚊中的发育。