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Persistence of an occlusion-negative recombinant nucleopolyhedrovirus in Trichoplusia ni indicates high multiplicity of cellular infection.

机译:毛滴虫的闭塞阴性重组核多角体病毒的持续存在表明细胞感染的高度多样性。

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摘要

We use data from the serial passage of co-occluded recombinant Autographa californica nuclear polyhedrosis virus (AcMNPV) to estimate the viral multiplicity of infection of cells within infected insects. Co-occlusion, the incorporation of wild-type and mutant virus genomes in the same occlusion body, has been proposed as a strategy to deliver genetically modified viruses as insecticides in a way that contains their spread in the environment. It may also serve as a means whereby naturally occurring mutant forms of NPVs can be maintained in a stable polymorphism. Here, a recombinant strain of AcMNPV was constructed with a deletion of its polyhedrin gene, rendering it incapable of producing occlusion bodies (i.e., occlusion negative). This was co-occluded with wild-type AcMNPV and used to infect fifth-instar Trichoplusia ni larvae. The fate of both genotypes was monitored over several rounds of insect infection. Levels of the occlusion-negative virus genome declined slowly over successive rounds of infection. We applied these data to a model of NPV population genetics to derive an estimate of 4.3 +/- 0.3 viral genomes per occlusion body-producing cell.
机译:我们使用来自共同闭塞的重组加州苜蓿核多角体病毒(AcMNPV)的连续传代的数据来估计感染昆虫内细胞感染的病毒多样性。共封闭,即将野生型和突变型病毒基因组整合到同一封闭体中,已被提议作为一种以包含其在环境中传播的方式将转基因病毒作为杀虫剂的策略。它也可以作为一种手段,使天然存在的NPV突变体形式保持稳定的多态性。在此,构建了AcMNPV的重组菌株,其中缺失了其多面体基因,使其不能产生闭塞体(即闭塞阴性)。它与野生型AcMNPV一起被封闭,并用于感染五龄Trichoplusia ni幼虫。两种基因型的命运在几轮昆虫感染中得到了监测。在连续几轮感染中,咬合阴性病毒基因组的水平缓慢下降。我们将这些数据应用于NPV种群遗传模型,以得出每个闭塞体产生细胞的4.3 +/- 0.3病毒基因组的估计值。

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