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Monitoring of the Parasite Load in the Digestive Tract of Rhodnius prolixus by Combined qPCR Analysis and Imaging Techniques Provides New Insights into the Trypanosome Life Cycle

生物 红牛 中肠 罗德纽斯 寄生虫寄主 克鲁兹锥虫 寄生虫负荷 人口 塔克曼 实时聚合酶链反应 昆虫 聚合酶链反应 微生物学 动物 免疫学 幼虫 遗传学 生态学 基因 万维网 免疫系统 社会学 人口学 计算机科学
作者
Felipe de Almeida Dias,Bárbara Guerra,Larissa Rezende Vieira,Hugo D. Perdomo,Ana Caroline P. Gandara,Raquel Juliana Vionette do Amaral,Renata Estebanez Vollú,Suzete Araújo Oliveira Gomes,Flávio Alves Lara,Marcos Henrique Ferreira Sorgine,Emiliano Medei,Pedro L. Oliveira,Didier Salmon
出处
期刊:PLOS Neglected Tropical Diseases [Public Library of Science]
卷期号:9 (10): e0004186-e0004186 被引量:53
标识
DOI:10.1371/journal.pntd.0004186
摘要

Background Here we report the monitoring of the digestive tract colonization of Rhodnius prolixus by Trypanosoma cruzi using an accurate determination of the parasite load by qPCR coupled with fluorescence and bioluminescence imaging (BLI). These complementary methods revealed critical steps necessary for the parasite population to colonize the insect gut and establish vector infection. Methodology/Principal Findings qPCR analysis of the parasite load in the insect gut showed several limitations due mainly to the presence of digestive-derived products that are thought to degrade DNA and inhibit further the PCR reaction. We developed a real-time PCR strategy targeting the T. cruzi repetitive satellite DNA sequence using as internal standard for normalization, an exogenous heterologous DNA spiked into insect samples extract, to precisely quantify the parasite load in each segment of the insect gut (anterior midgut, AM, posterior midgut, PM, and hindgut, H). Using combined fluorescence microscopy and BLI imaging as well as qPCR analysis, we showed that during their journey through the insect digestive tract, most of the parasites are lysed in the AM during the first 24 hours independently of the gut microbiota. During this short period, live parasites move through the PM to establish the onset of infection. At days 3–4 post-infection (p.i.), the parasite population begins to colonize the H to reach a climax at day 7 p.i., which is maintained during the next two weeks. Remarkably, the fluctuation of the parasite number in H remains relatively stable over the two weeks after refeeding, while the populations residing in the AM and PM increases slightly and probably constitutes the reservoirs of dividing epimastigotes. Conclusions/Significance These data show that a tuned dynamic control of the population operates in the insect gut to maintain an equilibrium between non-dividing infective trypomastigote forms and dividing epimastigote forms of the parasite, which is crucial for vector competence.
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