Literature DB >> 28535985

Recalcitrant deep and shallow nodes in Aristolochia (Aristolochiaceae) illuminated using anchored hybrid enrichment.

Stefan Wanke1, Carolina Granados Mendoza2, Sebastian Müller3, Anna Paizanni Guillén4, Christoph Neinhuis3, Alan R Lemmon5, Emily Moriarty Lemmon6, Marie-Stéphanie Samain7.   

Abstract

Recalcitrant relationships are characterized by very short internodes that can be found among shallow and deep phylogenetic scales all over the tree of life. Adding large amounts of presumably informative sequences, while decreasing systematic error, has been suggested as a possible approach to increase phylogenetic resolution. The development of enrichment strategies, coupled with next generation sequencing, resulted in a cost-effective way to facilitate the reconstruction of recalcitrant relationships. By applying the anchored hybrid enrichment (AHE) genome partitioning strategy to Aristolochia using an universal angiosperm probe set, we obtained 231-233 out of 517 single or low copy nuclear loci originally contained in the enrichment kit, resulting in a total alignment length of 154,756bp to 160,150bp. Since Aristolochia (Piperales; magnoliids) is distantly related to any angiosperm species whose genome has been used for the plant AHE probe design (Amborella trichopoda being the closest), it serves as a proof of universality for this probe set. Aristolochia comprises approximately 500 species grouped in several clades (OTUs), whose relationships to each other are partially unknown. Previous phylogenetic studies have shown that these lineages branched deep in time and in quick succession, seen as short-deep internodes. Short-shallow internodes are also characteristic of some Aristolochia lineages such as Aristolochia subsection Pentandrae, a clade of presumably recent diversification. This subsection is here included to test the performance of AHE at species level. Filtering and subsampling loci using the phylogenetic informativeness method resolves several recalcitrant phylogenetic relationships within Aristolochia. By assuming different ploidy levels during bioinformatics processing of raw data, first hints are obtained that polyploidization contributed to the evolution of Aristolochia. Phylogenetic results are discussed in the light of current systematics and morphology.
Copyright © 2017 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Enrichment strategy; Next generation sequencing; Phylogenomics; Polyploidy; Recent diversification; Short internodes; Universal nuclear probe set

Mesh:

Year:  2017        PMID: 28535985     DOI: 10.1016/j.ympev.2017.05.014

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


  8 in total

1.  Neutral Theory and the Somatic Evolution of Cancer.

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2.  Effectiveness of Two Universal Angiosperm Probe Sets Tested In Silico for Caryophyllids Taxa with Emphasis on Cacti Species.

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4.  Discordant Phylogenomic Placement of Hydnoraceae and Lactoridaceae Within Piperales Using Data From All Three Genomes.

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6.  An empirical assessment of a single family-wide hybrid capture locus set at multiple evolutionary timescales in Asteraceae.

Authors:  Katy E Jones; Tomáš Fér; Roswitha E Schmickl; Rebecca B Dikow; Vicki A Funk; Sonia Herrando-Moraira; Paul R Johnston; Norbert Kilian; Carolina M Siniscalchi; Alfonso Susanna; Marek Slovák; Ramhari Thapa; Linda E Watson; Jennifer R Mandel
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7.  Target Nuclear and Off-Target Plastid Hybrid Enrichment Data Inform a Range of Evolutionary Depths in the Orchid Genus Epidendrum.

Authors:  Carolina Granados Mendoza; Matthias Jost; Eric Hágsater; Susana Magallón; Cássio van den Berg; Emily Moriarty Lemmon; Alan R Lemmon; Gerardo A Salazar; Stefan Wanke
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8.  The best of both worlds: Combining lineage-specific and universal bait sets in target-enrichment hybridization reactions.

Authors:  Kasper P Hendriks; Terezie Mandáková; Nikolai M Hay; Elfy Ly; Alex Hooft van Huysduynen; Rubin Tamrakar; Shawn K Thomas; Oscar Toro-Núñez; J Chris Pires; Lachezar A Nikolov; Marcus A Koch; Michael D Windham; Martin A Lysak; Félix Forest; Klaus Mummenhoff; William J Baker; Frederic Lens; C Donovan Bailey
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  8 in total

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