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CRISPR/Cas9 gene drives in genetically variable and nonrandomly mating wild populations

机译:CRISPR / Cas9基因驱动遗传变异和非随机交配的野生种群

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Synthetic gene drives based on CRISPR/Cas9 have the potential to control, alter, or suppress populations of crop pests and disease vectors, but it is unclear how they will function in wild populations. Using genetic data from four populations of the flour beetle Tribolium castaneum, we show that most populations harbor genetic variants in Cas9 target sites, some of which would render them immune to drive (ITD). We show that even a rare ITD allele can reduce or eliminate the efficacy of a CRISPR/Cas9-based synthetic gene drive. This effect is equivalent to and accentuated by mild inbreeding, which is a characteristic of many disease-vectoring arthropods. We conclude that designing such drives will require characterization of genetic variability and the mating system within and among targeted populations.
机译:基于CRISPR / Cas9的合成基因驱动器有可能控制,改变或抑制农作物病虫害和病媒的种群,但尚不清楚它们如何在野生种群中发挥作用。使用来自四个甲虫Tri虫种群的遗传数据,我们显示了大多数种群在Cas9目标位点具有遗传变异,其中一些会使其免疫驱动(ITD)。我们显示,即使是罕见的ITD等位基因也可以降低或消除基于CRISPR / Cas9的合成基因驱动器的功效。这种作用与轻度近亲繁殖相当,并由轻度近亲繁殖加剧,这是许多病媒节肢动物的特征。我们得出的结论是,设计此类驱动器将需要表征目标人群内部和人群之间的遗传变异性和交配系统。

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