首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Mice Against Ticks: an experimental community-guided effort to prevent tick-borne disease by altering the shared environment
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Mice Against Ticks: an experimental community-guided effort to prevent tick-borne disease by altering the shared environment

机译:针对蜱虫的小鼠:通过改变共享环境来防止蜱型疾病的实验群落导向

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Mice Against Ticks is a community-guided ecological engineering project that aims to prevent tick-borne disease by using CRISPR-based genome editing to heritably immunize the white-footed mice (Peromyscus leucopus) responsible for infecting many ticks in eastern North America. Introducing antibody-encoding resistance allelesin to the local mouse population is anticipated to disrupt the disease transmission cycle for decades. Technology development is shaped by engagement with community members and visitors to the islands of Nantucket and Martha's Vineyard, including decisions at project inception about which types of disease resistance to pursue. This engagement process has prompted the researchers to use only white-footed mouse DNA if possible, meaning the current project will not involve gene drive. Instead, engineered mice would be released in the spring when the natural population is low, a plan unlikely to increase total numbers above the normal maximum in autumn. Community members are continually asked to share their suggestions and concerns, a process that has already identified potential ecological consequences unanticipated by the research team that will likely affect implementation. As an early example of CRISPR-based ecological engineering, Mice Against Ticks aims to start small and simple by working with island communities whose mouse populations can be lastingly immunized without gene drive.
机译:反蜱虫是一项社区导游的生态工程项目,旨在通过使用基于CRISPR的基因组编辑来预防蜱型疾病,以遗传地免疫北美洲的白脚小鼠(Peromyscus leucopus)。预计将抗体编码抗性等待抗体对局部小鼠群体造成几十年来破坏疾病传输周期。技术开发是通过与社区成员和游客参与楠塔基特和玛莎葡萄园的岛屿的侵蚀,包括项目成立的决定,这些决定是关于追求哪种疾病的抗病。这一参与过程促使研究人员仅在可能的情况下仅使用白脚鼠标DNA,这意味着当前项目不会涉及基因驱动。相反,当自然群体低时,工程师小鼠将在春天释放,这计划不太可能在秋季中最大值高于正常的总数。不断要求社区成员分享他们的建议和疑虑,这一进程已经确定了可能影响实施的研究团队意外的潜在生态后果。作为基于CRISPR的生态工程的早期例子,针对蜱虫的小鼠旨在通过与岛屿社区合作,在没有基因驱动的情况下持续免疫的岛屿社区,开始小而简单。

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