A confinable home-and-rescue gene drive for population modification

Author:

Kandul Nikolay P1ORCID,Liu Junru1,Bennett Jared B2ORCID,Marshall John M3ORCID,Akbari Omar S1ORCID

Affiliation:

1. Section of Cell and Developmental Biology, University of California, San Diego, San Diego, United States

2. Biophysics Graduate Group, University of California, Berkeley, Berkeley, United States

3. Division of Epidemiology and Biostatistics, School of Public Health, University of California, Berkeley, Berkeley, United States

Abstract

Homing-based gene drives, engineered using CRISPR/Cas9, have been proposed to spread desirable genes throughout populations. However, invasion of such drives can be hindered by the accumulation of resistant alleles. To limit this obstacle, we engineer a confinable population modification home-and-rescue (HomeR) drive in Drosophila targeting an essential gene. In our experiments, resistant alleles that disrupt the target gene function were recessive lethal and therefore disadvantaged. We demonstrate that HomeR can achieve an increase in frequency in population cage experiments, but that fitness costs due to the Cas9 insertion limit drive efficacy. Finally, we conduct mathematical modeling comparing HomeR to contemporary gene drive architectures for population modification over wide ranges of fitness costs, transmission rates, and release regimens. HomeR could potentially be adapted to other species, as a means for safe, confinable, modification of wild populations.

Funder

Defense Advanced Research Projects Agency

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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