Literature DB >> 31127939

Phylogenomic Relationships of Diploids and the Origins of Allotetraploids in Dactylorhiza (Orchidaceae).

Marie K Brandrud1, Juliane Baar1, Maria T Lorenzo1, Alexander Athanasiadis1, Richard M Bateman2, Mark W Chase2,3, Mikael Hedrén4, Ovidiu Paun1.   

Abstract

Disentangling phylogenetic relationships proves challenging for groups that have evolved recently, especially if there is ongoing reticulation. Although they are in most cases immediately isolated from diploid relatives, sets of sibling allopolyploids often hybridize with each other, thereby increasing the complexity of an already challenging situation. Dactylorhiza (Orchidaceae: Orchidinae) is a genus much affected by allopolyploid speciation and reticulate phylogenetic relationships. Here, we use genetic variation at tens of thousands of genomic positions to unravel the convoluted evolutionary history of Dactylorhiza. We first investigate circumscription and relationships of diploid species in the genus using coalescent and maximum likelihood methods, and then group 16 allotetraploids by maximum affiliation to their putative parental diploids, implementing a method based on genotype likelihoods. The direction of hybrid crosses is inferred for each allotetraploid using information from maternally inherited plastid RADseq loci. Starting from age estimates of parental taxa, the relative ages of these allotetraploid entities are inferred by quantifying their genetic similarity to the diploids and numbers of private alleles compared with sibling allotetraploids. Whereas northwestern Europe is dominated by young allotetraploids of postglacial origins, comparatively older allotetraploids are distributed further south, where climatic conditions remained relatively stable during the Pleistocene glaciations. Our bioinformatics approach should prove effective for the study of other naturally occurring, nonmodel, polyploid plant complexes.
© The Author(s) 2019. Published by Oxford University Press on behalf of the Society of Systematic Biologists.

Entities:  

Keywords:  zzm321990 Dactylorhizazzm321990 ; Allopolyploidy; coalescent; phylogenomics, RADseq; reticulate evolution; speciation

Mesh:

Year:  2020        PMID: 31127939      PMCID: PMC6902629          DOI: 10.1093/sysbio/syz035

Source DB:  PubMed          Journal:  Syst Biol        ISSN: 1063-5157            Impact factor:   9.160


  78 in total

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Review 5.  Insights from genomes into the evolutionary importance and prevalence of hybridization in nature.

Authors:  Scott A Taylor; Erica L Larson
Journal:  Nat Ecol Evol       Date:  2019-01-29       Impact factor: 15.460

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7.  Posterior Summarization in Bayesian Phylogenetics Using Tracer 1.7.

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8.  GeSeq - versatile and accurate annotation of organelle genomes.

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10.  Genetic differentiation and admixture between sibling allopolyploids in the Dactylorhiza majalis complex.

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  16 in total

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2.  Iterative allogamy-autogamy transitions drive actual and incipient speciation during the ongoing evolutionary radiation within the orchid genus Epipactis (Orchidaceae).

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3.  Restriction-site associated DNA sequencing supports a sister group relationship of Nigritella and Gymnadenia (Orchidaceae).

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6.  A Cautionary Note on the Use of Genotype Callers in Phylogenomics.

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10.  Spatial and Ecological Drivers of Genetic Structure in Greek Populations of Alkanna tinctoria (Boraginaceae), a Polyploid Medicinal Herb.

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