Literature DB >> 28645767

Assessing the potential of RAD-sequencing to resolve phylogenetic relationships within species radiations: The fly genus Chiastocheta (Diptera: Anthomyiidae) as a case study.

Tomasz Suchan1, Anahí Espíndola2, Sereina Rutschmann3, Brent C Emerson4, Kevin Gori5, Christophe Dessimoz6, Nils Arrigo7, Michał Ronikier8, Nadir Alvarez9.   

Abstract

Determining phylogenetic relationships among recently diverged species has long been a challenge in evolutionary biology. Cytoplasmic DNA markers, which have been widely used, notably in the context of molecular barcoding, have not always proved successful in resolving such phylogenies. However, with the advent of next-generation-sequencing technologies and associated techniques of reduced genome representation, phylogenies of closely related species have been resolved at a much higher detail in the last couple of years. Here we examine the potential and limitations of one of such techniques-Restriction-site Associated DNA (RAD) sequencing, a method that produces thousands of (mostly) anonymous nuclear markers, in disentangling the phylogeny of the fly genus Chiastocheta (Diptera: Anthomyiidae). In Europe, this genus encompasses seven species of seed predators, which have been widely studied in the context of their ecological and evolutionary interactions with the plant Trollius europaeus (Ranunculaceae). So far, phylogenetic analyses using mitochondrial markers failed to resolve monophyly of most of the species from this recently diversified genus, suggesting that their taxonomy may need a revision. However, relying on a single, non-recombining marker and ignoring potential incongruences between mitochondrial and nuclear loci may provide an incomplete account of the lineage history. In this study, we applied both classical Sanger sequencing of three mtDNA regions and RAD-sequencing, for reconstructing the phylogeny of the genus. Contrasting with results based on mitochondrial markers, RAD-sequencing analyses retrieved the monophyly of all seven species, in agreement with the morphological species assignment. We found robust nuclear-based species assignment of individual samples, and low levels of estimated contemporary gene flow among them. However, despite recovering species' monophyly, interspecific relationships varied depending on the set of RAD loci considered, producing contradictory topologies. Moreover, coalescence-based phylogenetic analyses revealed low supports for most of the interspecific relationships. Our results indicate that despite the higher performance of RAD-sequencing in terms of species trees resolution compared to cytoplasmic markers, reconstructing inter-specific relationships among recently-diverged lineages may lie beyond the possibilities offered by large sets of RAD-sequencing markers in cases of strong gene tree incongruence.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Coalescent analysis; DNA barcoding; Maximum likelihood; Mito-nuclear incongruence; Quartet inference; Single nucleotide polymorphisms

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Year:  2017        PMID: 28645767     DOI: 10.1016/j.ympev.2017.06.012

Source DB:  PubMed          Journal:  Mol Phylogenet Evol        ISSN: 1055-7903            Impact factor:   4.286


  2 in total

1.  Genomics overrules mitochondrial DNA, siding with morphology on a controversial case of species delimitation.

Authors:  Carmen Del R Pedraza-Marrón; Raimundo Silva; Jonathan Deeds; Steven M Van Belleghem; Alicia Mastretta-Yanes; Omar Domínguez-Domínguez; Rafael A Rivero-Vega; Loretta Lutackas; Debra Murie; Daryl Parkyn; Lewis H Bullock; Kristin Foss; Humberto Ortiz-Zuazaga; Juan Narváez-Barandica; Arturo Acero; Grazielle Gomes; Ricardo Betancur-R
Journal:  Proc Biol Sci       Date:  2019-04-10       Impact factor: 5.349

2.  DNA Barcoding versus Morphological Variability of Pterostichus brevicornis brevicornis (Kirby, 1837) (Coleoptera, Carabidae) in the Arctic and Subarctic.

Authors:  Natalia Andreevna Zubrii; Boris Yurevich Filippov; Alexander Vasilevich Kondakov; Olga Arturovna Khruleva; Leonid Borisovich Rybalov; Darya Vitalievna Vikhreva
Journal:  Insects       Date:  2022-02-16       Impact factor: 2.769

  2 in total

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