Gene-drive-mediated extinction is thwarted by population structure and evolution of sib mating

Author:

Bull James J1,Remien Christopher H2,Krone Stephen M2

Affiliation:

1. Department of Integrative Biology, University of Texas, Austin, TX, USA

2. Department of Mathematics, University of Idaho, Moscow, ID, USA

Abstract

AbstractBackground and objectivesGenetic engineering combined with CRISPR technology has developed to the point that gene drives can, in theory, be engineered to cause extinction in countless species. Success of extinction programs now rests on the possibility of resistance evolution, which is largely unknown. Depending on the gene-drive technology, resistance may take many forms, from mutations in the nuclease target sequence (e.g. for CRISPR) to specific types of non-random population structures that limit the drive (that may block potentially any gene-drive technology).MethodologyWe develop mathematical models of various deviations from random mating to consider escapes from extinction-causing gene drives. A main emphasis here is sib mating in the face of recessive-lethal and Y-chromosome drives.ResultsSib mating easily evolves in response to both kinds of gene drives and maintains mean fitness above 0, with equilibrium fitness depending on the level of inbreeding depression. Environmental determination of sib mating (as might stem from population density crashes) can also maintain mean fitness above 0. A version of Maynard Smith’s haystack model shows that pre-existing population structure can enable drive-free subpopulations to be maintained against gene drives.Conclusions and implicationsTranslation of mean fitness into population size depends on ecological details, so understanding mean fitness evolution and dynamics is merely the first step in predicting extinction. Nonetheless, these results point to possible escapes from gene-drive-mediated extinctions that lie beyond the control of genome engineering.Lay summaryRecent gene drive technologies promise to suppress and even eradicate pests and disease vectors. Simple models of gene-drive evolution in structured populations show that extinction-causing gene drives can be thwarted both through the evolution of sib mating as well as from purely demographic processes that cluster drive-free individuals.

Funder

National Institutes of Health GM

National Institute Of General Medical Sciences

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Health, Toxicology and Mutagenesis,Ecology, Evolution, Behavior and Systematics,Medicine (miscellaneous)

Reference38 articles.

1. Some effects of variations in the segregation ratio and of selection on the frequency of alleles under random mating;Prout;Acta Genet Stat Med,1953

2. Male segregation ratio advantage as a factor in maintaining lethal alleles in wild populations of house mice;Bruck;Proc Natl Acad Sci USA,1957

3. A general method for investigating the equilibrium of gene frequency in a population;Lewontin;Genetics,1958

4. Extraordinary sex ratios. A sex-ratio theory for sex linkage and inbreeding has new implications in cytogenetics and entomology;Hamilton;Science,1967

5. Meotic drive as an evolutionary force;Sandler;Am Naturalist,1957

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