bioRxiv · 10.1101/2020.12.15.421271
A CRISPR endonuclease gene drive reveals two distinct mechanisms of inheritance bias
Abstract
RNA guided CRISPR gene drives have shown the capability of biasing transgene inheritance in multiple species. Among these, homing endonuclease drives are the most developed. In this study, we report the functioning of sds3, bgcn, and nup50 expressed Cas9 in an Aedes aegypti homing split drive system targeting the white gene. We report their inheritance biasing capability, propensity for maternal deposition, and zygotic/somatic expression. Additionally, by making use of the tight linkage of white to the sex-determining locus, we were able to elucidate mechanisms of inheritance bias. We find inheritance bias through homing in double heterozygous males, but find that a previous report of the same drive occurred through meiotic drive. We propose that other previously reported homing design gene drives may in fact bias their inheritance through other mechanisms with important implications for gene drive design.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Verkuijl, S. A. N., Gonzalez, E., Ang, J. X. D., Li, M., Kandul, N. P., Anderson, M., Akbari, O. S., Bonsall, M., Alphey, L.. 2020-12-15. A CRISPR endonuclease gene drive reveals two distinct mechanisms of inheritance bias. https://doi.org/10.1101/2020.12.15.421271
Cite the original work for its findings. Save a collection to share your selection of sources.