Phylogenomics of parasitic and non-parasitic lice (Insecta: Psocodea): Combining sequence data and Exploring compositional bias solutions in Next Generation Datasets

Publication Type:Journal Article
Year of Publication:2020
Authors:R. S. de_Moya, Yoshizawa, K., Walden, K. K. O., Sweet, A. D., Dietrich, C. H., Johnson, K. P.
Journal:Systematic Biology
Issue:syaa075
Date Published:09-2020
Type of Article:Advance article, pre-print
ISSN:1063-5157
Keywords:Illumina, Phthiraptera, Psocoptera, Quartet sampling, Recoding methods
Abstract:

The insect order Psocodea is a diverse lineage comprising both parasitic (Phthiraptera) and non-parasitic members (Psocoptera). The extreme age and ecological diversity of the group may be associated with major genomic changes, such as base compositional biases expected to affect phylogenetic inference. Divergent morphology between parasitic and non-parasitic members has also obscured the origins of parasitism within the order. We conducted a phylogenomic analysis on the order Psocodea utilizing both transcriptome and genome sequencing to obtain a data set of 2,370 orthologous genes. All phylogenomic analyses, including both concatenated and coalescent methods suggest a single origin of parasitism within the order Psocodea, resolving conflicting results from previous studies. This phylogeny allows us to propose a stable ordinal level classification scheme that retains significant taxonomic names present in historical scientific literature and reflects the evolution of the group as a whole. A dating analysis, with internal nodes calibrated by fossil evidence, suggests an origin of parasitism that predates the K-Pg boundary. Nucleotide compositional biases are detected in third and first codon positions and result in the anomalous placement of the Amphientometae as sister to Psocomorpha when all nucleotide sites are analyzed. Likelihood-mapping and quartet sampling methods demonstrate that base compositional biases can also have an effect on quartet-based methods.

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URL:https://academic.oup.com/sysbio/article/70/4/719/5912026
DOI:10.1093/sysbio/syaa075
Wed, 2020-12-23 15:05 -- Yokb
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