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Real-time quantitative PCR for analysis of candidate fungal biopesticides against malaria: Technique validation and first applications

机译:实时定量PCR分析候选抗疟疾真菌生物农药:技术验证和首次应用

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摘要

Recent research has indicated that fungal biopesticides could augment existing malaria vector control tools. Here we present a set of methodologies to monitor the in vivo kinetics of entomopathogenic fungi in Anopheles in the presence or absence of malaria parasites using quantitative real-time PCR. Three qPCR assays were successfully developed for counting fungal genomes: “specific” assays capable of distinguishing two well characterized fungal entomopathogens Beauveria bassiana isolate IMI391510 and Metarhizium anisopliae var. acridum isolate IMI330189, both of which have previously been shown to be virulent to Anopheles mosquitoes, and a “generic” fungal assay for determining any fungal burden. A fourth assay to Plasmodium chabaudi enabled quantification of co-infecting malarial parasites. All qPCR assays provide sensitive, target-specific, and robust quantification over a linear range of greater than five orders of magnitude (seven orders of magnitude for the fungal assays). B. bassiana growth within mosquitoes exposed to three different conidial challenge doses was monitored using the B. bassiana-specific assay and represents the first description of entomopathogenic fungal replication within an insect host. This revealed that, irrespective of challenge dose, after several days of relatively little replication, a sudden on-set of substantial nuclear division occurs, accompanied by physical fungal growth (hyphae) within the mosquito haemocoel shortly before death. Exposure to higher densities of conidia resulted in significantly greater pick-up by mosquitoes and to elevated fungal burdens at each time point sampled. High fungal burdens, comparable to those identified in cadavers, were attained more rapidly and mortalities occurred earlier post-exposure with increasing challenge dose. The lines of research made possible by the qPCR assays described here will contribute to optimization of fungal biopesticides against malaria and other vector-borne diseases.
机译:最近的研究表明,真菌生物农药可以增强现有的疟疾媒介控制工具。在这里,我们提出了一套使用定量实时PCR监测疟原虫存在或不存在的按蚊中致病真菌的体内动力学的方法。已成功开发出三种qPCR测定法来计数真菌基因组:“特异性”测定法能够区分两种表征良好的真菌昆虫病原球孢白僵菌分离株IMI391510和无变金属变种。 cri虫分离物IMI330189(以前已被证明对蚊子有毒)和用于确定任何真菌负担的“通用”真菌测定法。 Chabaudi疟原虫的第四种检测方法能够定量检测共感染的疟原虫。所有qPCR分析均可在大于五个数量级的线性范围内(真菌分析为七个数量级)提供灵敏,特异于靶标且鲁棒的定量分析。暴露于三种不同分生孢子激发剂量的蚊子中的球孢杆菌的生长用球孢杆菌特异性测定法进行监测,并代表昆虫宿主内昆虫病原性真菌复制的首次描述。这表明,不管攻击剂量如何,在几天相对较少的复制后,突然发生实质性核分裂,伴随着死亡前不久蚊子内的物理真菌生长(菌丝)。暴露于较高分生孢子的密度会导致蚊子对孢子的吸收明显增加,并且在每个采样时间点都增加了真菌的负担。与尸体中确定的那些相比,可以更快地达到较高的真菌负担,并且随着攻击剂量的增加,死亡发生在接触后更早。通过此处描述的qPCR测定法进行的研究工作将有助于优化抗疟疾和其他媒介传播疾病的真菌生物农药。

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