Department of Entomology, University of California, Riverside, CA 92521.
Center for Disease Vector Research, Institute for Integrative Genome Biology, University of California, Riverside, CA 92521.
Proc Natl Acad Sci U S A. 2017 Dec 5;114(49):E10540-E10549. doi: 10.1073/pnas.1711538114. Epub 2017 Nov 14.
The development of CRISPR/Cas9 technologies has dramatically increased the accessibility and efficiency of genome editing in many organisms. In general, in vivo germline expression of Cas9 results in substantially higher activity than embryonic injection. However, no transgenic lines expressing Cas9 have been developed for the major mosquito disease vector Here, we describe the generation of multiple stable, transgenic strains expressing Cas9 in the germline, resulting in dramatic improvements in both the consistency and efficiency of genome modifications using CRISPR. Using these strains, we disrupted numerous genes important for normal morphological development, and even generated triple mutants from a single injection. We have also managed to increase the rates of homology-directed repair by more than an order of magnitude. Given the exceptional mutagenic efficiency and specificity of the Cas9 strains we engineered, they can be used for high-throughput reverse genetic screens to help functionally annotate the genome. Additionally, these strains represent a step toward the development of novel population control technologies targeting that rely on Cas9-based gene drives.
CRISPR/Cas9 技术的发展极大地提高了许多生物中基因组编辑的可及性和效率。一般来说,Cas9 在体内生殖系中的表达比胚胎注射产生的活性要高得多。然而,对于主要的蚊子病媒,尚未开发出表达 Cas9 的转基因品系。在这里,我们描述了多个稳定的、生殖系中表达 Cas9 的转基因品系的产生,这导致使用 CRISPR 进行基因组修饰的一致性和效率有了显著提高。使用这些品系,我们破坏了许多对正常形态发育很重要的基因,甚至从单次注射中产生了三重突变体。我们还设法将同源定向修复的效率提高了一个数量级以上。鉴于我们设计的 Cas9 品系具有出色的诱变效率和特异性,它们可用于高通量反向遗传筛选,以帮助功能注释 基因组。此外,这些品系代表了朝着开发依赖 Cas9 基因为基础的基因驱动的新型种群控制技术迈出的一步,该技术可用于控制 。