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Ramos-Almodovar, F.

Publications and source records attributed to Ramos-Almodovar, F..

2 recordsLinked to original sources

Methylation-associated mutagenesis underlies variation in the mutation spectrum across eukaryotes

Mutation spectra vary across genetic and environmental contexts, leading to differences between and within species. Most research on mutation spectrum has focused on the trinucleotide (3-mer) mutation types in mammals, limiting the breadth and depth of variation surveyed. In this study, we use whole-genome resequencing data across 108 eukaryotic species - including mammals, fish, plants, and invertebrates - to characterize pentanucleotide (5-mer) non-coding mutation spectra using a Bayesian approach. Our findings reveal cytosine transition mutability at CpG and (among plants) at CHG sites as the main drivers of variation in mutation spectra across eukaryotes, correlating strongly with genomic CpG and CHG depletion. However, despite the influence of methylation on CpG mutability, genome-wide average CpG methylation levels do not predict CpG transition rates across species and CHG methylation does not predict CHG transition rate, indicating unknown genetic or environmental factors influencing mutation rates at methylated cytosines. Together, our results illustrate the pivotal role of mutagenesis in shaping genome composition across eukaryotes and highlight a gap in knowledge about the mechanisms governing mutation rates.

evolutionary biology↗

Characterization of nuclear mitochondrial insertions in canine genome assemblies

BackgroundThe presence of mitochondrial sequences in the nuclear genome (Numts) confounds analyses of mitochondrial sequence variation and is a potential source of false positives in disease studies. To improve the analysis of mitochondrial variation in canines, we completed a systematic assessment of Numt content across genome assemblies, canine populations and the carnivore lineage. ResultsCentering our analysis on the UU_Cfam_GSD_1.0/canFam4/Mischka assembly, a commonly used reference in dog genetic variation studies, we find a total of 321 Numts, located throughout the nuclear genome and encompassing the entire sequence of the mitochondria. Comparison to 14 canine genome assemblies identified 63 Numts with presence-absence dimorphism among dogs, wolves, and a coyote. Further, a subset of Numts were maintained across carnivore evolutionary time (arctic fox, polar bear, cat), with 8 sequences likely more than 10 million years old, and shared with the domestic cat. On a population level, using structural variant data from the Dog10K Consortium for 1,879 dogs and wolves, we identified 11 Numts that are absent in at least one sample as well as 53 Numts that are absent from the Mischka assembly. ConclusionsWe highlight scenarios where the presence of Numts is a potentially confounding factor and provide an annotation of these sequences in canine genome assemblies. This resource will aid the identification and interpretation of polymorphisms in both somatic and germline mitochondrial studies in canines.

genomics↗