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Genetically Engineering Wild Mice to Combat Lyme Disease: An Ecological Perspective

机译:基因工程野生小鼠对抗莱姆病:生态观点

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Genetic engineering of wild populations has been proposed for reducing human diseases by altering pathogens' hosts. For example, CRISPR-based genome editing may be used to create white-footed mice (Peromyscus leucopus) that are resistant to the Lyme disease spirochete vectored by blacklegged ticks (Ixodes scapularis). Toward this goal, academic researchers are developing Lyme-resistant and tick-resistant white-footed mice, which are a primary pathogen reservoir for Lyme disease in the United States. If field trials on small, experimental islands are successful, the project would scale up to the larger islands of Nantucket and Martha's Vineyard, Massachusetts, and possibly to the mainland, most likely with a local gene drive to speed the traits' proliferation, pending approvals from relevant constituents. Despite considerable publicity, this project has yet to be evaluated by independent professional ecologists. In the present article, I discuss key ecological and evolutionary questions that should be considered before such genetically engineered mice are released into natural habitats.
机译:已经提出了通过改变病原体的宿主来减少人类疾病的遗传工程。例如,基于CRISPR的基因组编辑可用于制造对螺旋蜱(Ixodes Scapularis)传染媒介的螺旋体螺旋体的白脚小鼠(Peromyscus leucopus)。对于这一目标,学术研究人员正在开发抗性和抗抗抗性白脚小鼠,这是美国莱姆病的主要病原体储层。如果对小型实验岛屿的现场试验成功,该项目将扩大到楠塔克特和玛莎葡萄园,马萨诸塞州的大岛屿,并可能到大陆,最有可能与当地基因驱动器加快特征的扩散,待定批准来自相关成分。尽管宣传相当大,但该项目尚未由独立的专业生态学家进行评估。在本文中,我讨论了在这种转基因小鼠释放到自然栖息地之前应该考虑的关键生态和进化问题。

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