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Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict

Though the phylogenetic signal of loci on sex chromosomes can differ from those on autosomes, chromosomal-level genome assemblies for nonvertebrates are still relatively scarce and conservation of chromosomal gene content across deep phylogenetic scales has therefore remained largely unexplored. We...

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Autores principales: Knyshov, Alexander, Gordon, Eric R L, Masonick, Paul K, Castillo, Stephanie, Forero, Dimitri, Hoey-Chamberlain, Rochelle, Hwang, Wei Song, Johnson, Kevin P, Lemmon, Alan R, Moriarty Lemmon, Emily, Standring, Samantha, Zhang, Junxia, Weirauch, Christiane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10411492/
https://www.ncbi.nlm.nih.gov/pubmed/37494292
http://dx.doi.org/10.1093/molbev/msad168
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author Knyshov, Alexander
Gordon, Eric R L
Masonick, Paul K
Castillo, Stephanie
Forero, Dimitri
Hoey-Chamberlain, Rochelle
Hwang, Wei Song
Johnson, Kevin P
Lemmon, Alan R
Moriarty Lemmon, Emily
Standring, Samantha
Zhang, Junxia
Weirauch, Christiane
author_facet Knyshov, Alexander
Gordon, Eric R L
Masonick, Paul K
Castillo, Stephanie
Forero, Dimitri
Hoey-Chamberlain, Rochelle
Hwang, Wei Song
Johnson, Kevin P
Lemmon, Alan R
Moriarty Lemmon, Emily
Standring, Samantha
Zhang, Junxia
Weirauch, Christiane
author_sort Knyshov, Alexander
collection PubMed
description Though the phylogenetic signal of loci on sex chromosomes can differ from those on autosomes, chromosomal-level genome assemblies for nonvertebrates are still relatively scarce and conservation of chromosomal gene content across deep phylogenetic scales has therefore remained largely unexplored. We here assemble a uniquely large and diverse set of samples (17 anchored hybrid enrichment, 24 RNA-seq, and 70 whole-genome sequencing samples of variable depth) for the medically important assassin bugs (Reduvioidea). We assess the performance of genes based on multiple features (e.g., nucleotide vs. amino acid, nuclear vs. mitochondrial, and autosomal vs. X chromosomal) and employ different methods (concatenation and coalescence analyses) to reconstruct the unresolved phylogeny of this diverse (∼7,000 spp.) and old (>180 Ma) group. Our results show that genes on the X chromosome are more likely to have discordant phylogenies than those on autosomes. We find that the X chromosome conflict is driven by high gene substitution rates that impact the accuracy of phylogenetic inference. However, gene tree clustering showed strong conflict even after discounting variable third codon positions. Alternative topologies were not particularly enriched for sex chromosome loci, but spread across the genome. We conclude that binning genes to autosomal or sex chromosomes may result in a more accurate picture of the complex evolutionary history of a clade.
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spelling pubmed-104114922023-08-10 Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict Knyshov, Alexander Gordon, Eric R L Masonick, Paul K Castillo, Stephanie Forero, Dimitri Hoey-Chamberlain, Rochelle Hwang, Wei Song Johnson, Kevin P Lemmon, Alan R Moriarty Lemmon, Emily Standring, Samantha Zhang, Junxia Weirauch, Christiane Mol Biol Evol Discoveries Though the phylogenetic signal of loci on sex chromosomes can differ from those on autosomes, chromosomal-level genome assemblies for nonvertebrates are still relatively scarce and conservation of chromosomal gene content across deep phylogenetic scales has therefore remained largely unexplored. We here assemble a uniquely large and diverse set of samples (17 anchored hybrid enrichment, 24 RNA-seq, and 70 whole-genome sequencing samples of variable depth) for the medically important assassin bugs (Reduvioidea). We assess the performance of genes based on multiple features (e.g., nucleotide vs. amino acid, nuclear vs. mitochondrial, and autosomal vs. X chromosomal) and employ different methods (concatenation and coalescence analyses) to reconstruct the unresolved phylogeny of this diverse (∼7,000 spp.) and old (>180 Ma) group. Our results show that genes on the X chromosome are more likely to have discordant phylogenies than those on autosomes. We find that the X chromosome conflict is driven by high gene substitution rates that impact the accuracy of phylogenetic inference. However, gene tree clustering showed strong conflict even after discounting variable third codon positions. Alternative topologies were not particularly enriched for sex chromosome loci, but spread across the genome. We conclude that binning genes to autosomal or sex chromosomes may result in a more accurate picture of the complex evolutionary history of a clade. Oxford University Press 2023-07-26 /pmc/articles/PMC10411492/ /pubmed/37494292 http://dx.doi.org/10.1093/molbev/msad168 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Society for Molecular Biology and Evolution. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Discoveries
Knyshov, Alexander
Gordon, Eric R L
Masonick, Paul K
Castillo, Stephanie
Forero, Dimitri
Hoey-Chamberlain, Rochelle
Hwang, Wei Song
Johnson, Kevin P
Lemmon, Alan R
Moriarty Lemmon, Emily
Standring, Samantha
Zhang, Junxia
Weirauch, Christiane
Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title_full Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title_fullStr Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title_full_unstemmed Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title_short Chromosome-Aware Phylogenomics of Assassin Bugs (Hemiptera: Reduvioidea) Elucidates Ancient Gene Conflict
title_sort chromosome-aware phylogenomics of assassin bugs (hemiptera: reduvioidea) elucidates ancient gene conflict
topic Discoveries
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10411492/
https://www.ncbi.nlm.nih.gov/pubmed/37494292
http://dx.doi.org/10.1093/molbev/msad168
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