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Novel combination of CRISPR-based gene drives eliminates resistance and localises spread.


ABSTRACT: Invasive species are among the major driving forces behind biodiversity loss. Gene drive technology may offer a humane, efficient and cost-effective method of control. For safe and effective deployment it is vital that a gene drive is both self-limiting and can overcome evolutionary resistance. We present HD-ClvR in this modelling study, a novel combination of CRISPR-based gene drives that eliminates resistance and localises spread. As a case study, we model HD-ClvR in the grey squirrel (Sciurus carolinensis), which is an invasive pest in the UK and responsible for both biodiversity and economic losses. HD-ClvR combats resistance allele formation by combining a homing gene drive with a cleave-and-rescue gene drive. The inclusion of a self-limiting daisyfield gene drive allows for controllable localisation based on animal supplementation. We use both randomly mating and spatial models to simulate this strategy. Our findings show that HD-ClvR could effectively control a targeted grey squirrel population, with little risk to other populations. HD-ClvR offers an efficient, self-limiting and controllable gene drive for managing invasive pests.

SUBMITTER: Faber NR 

PROVIDER: S-EPMC7933345 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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Novel combination of CRISPR-based gene drives eliminates resistance and localises spread.

Faber Nicky R NR   McFarlane Gus R GR   Gaynor R Chris RC   Pocrnic Ivan I   Whitelaw C Bruce A CBA   Gorjanc Gregor G  

Scientific reports 20210304 1


Invasive species are among the major driving forces behind biodiversity loss. Gene drive technology may offer a humane, efficient and cost-effective method of control. For safe and effective deployment it is vital that a gene drive is both self-limiting and can overcome evolutionary resistance. We present HD-ClvR in this modelling study, a novel combination of CRISPR-based gene drives that eliminates resistance and localises spread. As a case study, we model HD-ClvR in the grey squirrel (Sciurus  ...[more]

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