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Development of a Real-Time qPCR Assay for Quantification of Covert Baculovirus Infections in a Major African Crop Pest

机译:实时定量PCR技术的发展用于定量对非洲主要农作物中隐匿性杆状病毒的感染

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摘要

Many pathogens and parasites are present in host individuals and populations without any obvious signs of disease. This is particularly true for baculoviruses infecting lepidopteran hosts, where studies have shown that covert persistent viral infections are almost ubiquitous in many species. To date, the infection intensity of covert viruses has rarely been quantified. In this study, we investigated the dynamics of a covert baculovirus infection within the lepidopteran crop pest Spodoptera exempta. A real-time quantitative polymerase chain reaction (qPCR) procedure using a 5' nuclease hydrolysis (TaqMan) probe was developed for specific detection and quantification of Spodoptera exempta nucleopolyhedrovirus (SpexNPV). The qPCR assay indicated that covert baculovirus dynamics varied considerably over the course of the host life-cycle, with infection load peaking in early larval instars and being lowest in adults and final-instar larvae. Adult dissections indicated that, contrary to expectation, viral load aggregation was highest in the head, wings and legs, and lowest in the thorax and abdomen. The data presented here have broad implications relating to our understanding of transmission patterns of baculoviruses and the role of covert infections in host-pathogen dynamics.
机译:宿主个体和种群中存在许多病原体和寄生虫,没有任何明显的疾病迹象。对于感染鳞翅目宿主的杆状病毒尤其如此,研究表明,隐蔽的持续性病毒感染在许多物种中几乎普遍存在。迄今为止,隐蔽病毒的感染强度很少被量化。在这项研究中,我们调查了鳞翅目作物害虫夜蛾(Spodoptera exempta)隐性杆状病毒感染的动力学。开发了使用5'核酸酶水解(TaqMan)探针的实时定量聚合酶链反应(qPCR)程序,用于特异性检测和定量免除夜蛾(Spodoptera exempta)核多角体病毒(SpexNPV)。 qPCR分析表明,在宿主生命周期中,杆状病毒的动态变化很大,感染负荷在幼虫早期成虫中达到峰值,而在成年幼虫和终龄中则最低。成人解剖表明,与预期相反,病毒负荷聚集在头部,翅膀和腿部最高,而在胸部和腹部最低。这里介绍的数据具有广泛的意义,与我们对杆状病毒的传播方式的理解以及隐性感染在宿主-病原体动力学中的作用有关。

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