Controlling invasive rodents via synthetic gene drive and the role of polyandry

Manser, Andri, Cornell, Stephen J., Sutter, Andreas, Blondel, Dimitri V., Serr, Megan, Godwin, John and Price, Tom A. R. (2019) Controlling invasive rodents via synthetic gene drive and the role of polyandry. Proceedings of the Royal Society B: Biological Sciences, 286 (1909). ISSN 0962-8452

[thumbnail of Published_Version]
Preview
PDF (Published_Version) - Published Version
Available under License Creative Commons Attribution.

Download (663kB) | Preview

Abstract

House mice are a major ecosystem pest, particularly threatening island ecosystems as a non-native invasive species. Rapid advances in synthetic biology offer new avenues to control pest species for biodiversity conservation. Recently, a synthetic sperm-killing gene drive construct called t-Sry has been proposed as a means to eradicate target mouse populations owing to a lack of females. A factor that has received little attention in the discussion surrounding such drive applications is polyandry. Previous research has demonstrated that sperm-killing drivers are extremely damaging to a male’s sperm competitive ability. Here, we examine the importance of this effect on the t-Sry system using a theoretical model. We find that polyandry substantially hampers the spread of t-Sry such that release efforts have to be increased three- to sixfold for successful eradication. We discuss the implications of our finding for potential pest control programmes, the risk of drive spread beyond the target population, and the emergence of drive resistance. Our work highlights that a solid understanding of the forces that determine drive dynamics in a natural setting is key for successful drive application, and that exploring the natural diversity of gene drives may inform effective gene drive design.

Item Type: Article
Faculty \ School: Faculty of Science > School of Biological Sciences
Related URLs:
Depositing User: LivePure Connector
Date Deposited: 12 Sep 2019 15:39
Last Modified: 22 Oct 2022 05:12
URI: https://ueaeprints.uea.ac.uk/id/eprint/72146
DOI: 10.1098/rspb.2019.0852

Downloads

Downloads per month over past year

Actions (login required)

View Item View Item