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- W4375861908 abstract "Abstract Whole mitochondrial genomes are often used in phylogenetic reconstruction. However, discordant patterns in species relationships between mitochondrial and nuclear phylogenies are commonly observed. Within Anthozoa (Phylum Cnidaria), mitochondrial (mt)-nuclear discordance has not yet been examined using a large and comparable dataset. Here, we used data obtained from target-capture enrichment sequencing to assemble and annotate mt genomes and reconstruct phylogenies for comparisons to phylogenies inferred from hundreds of nuclear loci obtained from the same samples. The datasets comprised 108 hexacorals and 94 octocorals representing all orders and > 50% of extant families. Results indicated rampant discordance between datasets at every taxonomic level. This discordance is not attributable to substitution saturation, but rather likely caused by introgressive hybridization and unique properties of mt genomes, including slow rates of evolution driven by strong purifying selection and substitution rate variation. Strong purifying selection across the mt genomes caution their use in analyses that rely on assumptions of neutrality. Furthermore, unique properties of the mt genomes were noted, including genome rearrangements and the presence of nad5 introns. Specifically, we note the presence of the homing endonuclease in ceriantharians. This large dataset of mitochondrial genomes further demonstrates the utility of off-target reads generated from target-capture data for mt genome assembly and adds to the growing knowledge of anthozoan evolution." @default.
- W4375861908 created "2023-05-10" @default.
- W4375861908 creator A5009459018 @default.
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- W4375861908 creator A5086746472 @default.
- W4375861908 date "2023-05-08" @default.
- W4375861908 modified "2023-10-16" @default.
- W4375861908 title "Mito-nuclear discordance within Anthozoa, with notes on unique properties of their mitochondrial genomes" @default.
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- W4375861908 doi "https://doi.org/10.1038/s41598-023-34059-1" @default.
- W4375861908 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/37156831" @default.
- W4375861908 hasPublicationYear "2023" @default.