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Transcriptome analysis based detection of Plasmodium falciparum development in Anopheles stephensi mosquitoes

机译:基于转录组分析的斯蒂芬斯按蚊蚊中恶性疟原虫发育检测

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摘要

The Plasmodium life cycle within the mosquito involves the gamete, zygote, motile ookinete, and the oocyst stage that supports sporogony and sporozoite formation. We mapped the P. falciparum transcriptome as the parasite progresses through the oocyst stage of development on days 2, 4, 6, and 8 post-P. falciparum infectious blood meal. Through these genomic studies, we identified 212 novel transmission stage biomarkers including genes that are developmentally expressed at a single time point and genes that are pan-developmentally expressed at all four time points in P. falciparum oocysts. Validation of a small subset of genes at the transcriptional and translational level resulted in identification of a signature of genes/proteins that can detect parasites within the mosquito as early as day 2 post-infectious blood meal and can be used to distinguish early versus late stage P. falciparum oocyst development in the mosquito. Currently, circumsporozoite protein (CSP), which is detectable only after day 7 post-infection, is the only marker used for detection of P. falciparum infection in mosquitoes. Our results open the prospect to develop a non-CSP based detection assay for assessment of P. falciparum infection in mosquitoes and evaluate the effect of intervention measures on malaria transmission in an endemic setting.
机译:蚊子中的疟原虫生命周期涉及配子,合子,能动的卵子和支持孢子形成和子孢子形成的卵囊阶段。我们绘制了恶性疟原虫转录组的图谱,因为寄生虫在P后第2、4、6和8天通过卵囊发育阶段进展。恶性血液传染性血粉。通过这些基因组研究,我们鉴定了212个新的传播阶段生物标记,包括在恶性疟原虫卵囊中在单个时间点发育表达的基因和在所有四个时间点泛发育表达的基因。在转录和翻译水平上对一小部分基因的验证导致鉴定了可以在感染性血粉最早的第二天就检测出蚊子中的寄生虫的基因/蛋白质的特征,并且可以用于区分早期和晚期恶性疟原虫卵囊在蚊子中发育。当前,仅在感染后第7天才可检测到的环子孢子蛋白(CSP)是用于检测蚊子中恶性疟原虫感染的唯一标记物。我们的结果为开发一种基于非CSP的检测方法以评估蚊子中恶性疟原虫的感染以及评估在流行环境中干预措施对疟疾传播的效果开辟了前景。

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