The Polymorphism Frequency Spectrum of Finitely Many Sites Under Selection

Author:

Desai Michael M1,Plotkin Joshua B2

Affiliation:

1. Lewis–Sigler Institute for Integrative Genomics, Princeton University, Princeton, New Jersey 08544 and

2. Department of Biology and Program in Applied Mathematics and Computation Science, University of Pennsylvania, Philadelphia, Pennsylvania 19104

Abstract

Abstract The distribution of genetic polymorphisms in a population contains information about evolutionary processes. The Poisson random field (PRF) model uses the polymorphism frequency spectrum to infer the mutation rate and the strength of directional selection. The PRF model relies on an infinite-sites approximation that is reasonable for most eukaryotic populations, but that becomes problematic when θ is large (θ ≳ 0.05). Here, we show that at large mutation rates characteristic of microbes and viruses the infinite-sites approximation of the PRF model induces systematic biases that lead it to underestimate negative selection pressures and mutation rates and erroneously infer positive selection. We introduce two new methods that extend our ability to infer selection pressures and mutation rates at large θ: a finite-site modification of the PRF model and a new technique based on diffusion theory. Our methods can be used to infer not only a “weighted average” of selection pressures acting on a gene sequence, but also the distribution of selection pressures across sites. We evaluate the accuracy of our methods, as well that of the original PRF approach, by comparison with Wright–Fisher simulations.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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