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Transforming insect population control with precision guided sterile males with demonstration in flies

机译:精确引导的不育雄性昆虫转化控制昆虫并在果蝇中演示

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摘要

The sterile insect technique (SIT) is an environmentally safe and proven technology to suppress wild populations. To further advance its utility, a novel CRISPR-based technology termed precision guided SIT (pgSIT) is described. PgSIT mechanistically relies on a dominant genetic technology that enables simultaneous sexing and sterilization, facilitating the release of eggs into the environment ensuring only sterile adult males emerge. Importantly, for field applications, the release of eggs will eliminate burdens of manually sexing and sterilizing males, thereby reducing overall effort and increasing scalability. Here, to demonstrate efficacy, we systematically engineer multiple pgSIT systems in Drosophila which consistently give rise to 100% sterile males. Importantly, we demonstrate that pgSIT-generated sterile males are fit and competitive. Using mathematical models, we predict pgSIT will induce substantially greater population suppression than can be achieved by currently-available self-limiting suppression technologies. Taken together, pgSIT offers to potentially transform our ability to control insect agricultural pests and disease vectors.
机译:不育昆虫技术(SIT)是一种环境安全且经过验证的抑制野生种群的技术。为了进一步提高其实用性,描述了一种基于CRISPR的新型技术,称为精确引导SIT(pgSIT)。 PgSIT机械地依靠一种占主导地位的遗传技术,该技术能够同时进行性别鉴定和灭菌,从而有助于将卵子释放到环境中,从而确保仅出现不育的成年雄性。重要的是,对于田间应用,卵子的释放将消除手动对雄性进行性别鉴定和消毒的负担,从而减少总体工作量并提高可扩展性。在这里,为了证明疗效,我们在果蝇中系统地设计了多个pgSIT系统,这些系统持续产生100%不育雄性。重要的是,我们证明了pgSIT产生的不育雄性很健康且具有竞争力。使用数学模型,我们预测pgSIT将比当前可用的自限抑制技术所能实现的人口抑制作用大得多。两者合计,pgSIT提供潜在地改变我们控制昆虫农业害虫和病媒的能力。

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