학술논문

De Novo Mutation Rate Variation and Its Determinants in Chlamydomonas
Document Type
Academic Journal
Source
Molecular Biology and Evolution. September, 2021, Vol. 38 Issue 9, p3709, 15 p.
Subject
Genomics -- Analysis -- Genetic aspects
Raw materials -- Analysis
Genomes -- Genetic aspects -- Analysis
Natural selection -- Analysis -- Genetic aspects
Language
English
ISSN
0737-4038
Abstract
De novo mutations are central for evolution, since they provide the raw material for natural selection by regenerating genetic variation. However, studying de novo mutations is challenging and is generally restricted to model species, so we have a limited understanding of the evolution of the mutation rate and spectrum between closely related species. Here, we present a mutation accumulation (MA) experiment to study de novo mutation in the unicellular green alga Chlamydomonas incerta and perform comparative analyses with its closest known relative, Chlamydomonas reinhardtii. Using whole-genome sequencing data, we estimate that the median single nucleotide mutation (SNM) rate in C. incerta is [mu] = 7.6 * [10.sup.-10], and is highly variable between MA lines, ranging from [mu] = 0.35 * [10.sup.-10] to [mu] = 131.7 * [10.sup.-10]. The SNM rate is strongly positively correlated with the mutation rate for insertions and deletions between lines (r > 0.97). We infer that the genomic factors associated with variation in the mutation rate are similar to those in C. reinhardtii, allowing for cross-prediction between species. Among these genomic factors, sequence context and complexity are more important than GC content. With the exception of a remarkably high C[right arrow]T bias, the SNM spectrum differs markedly between the two Chlamydomonas species. Our results suggest that similar genomic and biological characteristics may result in a similar mutation rate in the two species, whereas the SNM spectrum has more freedom to diverge. Key words: Chlamydomonas incerta, Chlamydomonas reinhardtii, comparative mutability, mutation accumulation, mutation rate, mutation spectrum.
Introduction Mutation plays a key role in evolution, since it generates genetic variation, providing the raw material for selection and adaptation. New mutational variance and heritability are important for determining [...]