Literature DB >> 24295915

A three-gene phylogeny of the Mycena pura complex reveals 11 phylogenetic species and shows ITS to be unreliable for species identification.

Christoffer B Harder1, Thomas Læssøe, Tobias G Frøslev, Flemming Ekelund, Søren Rosendahl, Rasmus Kjøller.   

Abstract

Phylogenetic analyses of Mycena sect. Calodontes using ITS previously suggested ten cryptic monophyletic ITS lineages within the Mycena pura morphospecies. Here, we compare ITS data (645 bp incl. gaps) from 46 different fruit bodies that represent the previously described ITS diversity with partial tEF-1-α (423 bp) and RNA polymerase II (RPB1) (492 bp) sequence data to test the genealogical concordance. While neither of the markers were in complete topological agreement, the branches differing between the tEF and RPB1 trees had a low bootstrap (<50) support, and the partition homogeneity incongruence length difference (ILD) tests were not significant. ILD tests revealed significant discordances between ITS and the tEF and RPB1 markers in several lineages. And our analyses suggested recombination between ITS1 and ITS2, most pronounced in one phylospecies that was identical in tEF and RPB1. Based on the agreement between tEF and RPB1, we defined 11 mutually concordant terminal clades as phylospecies inside the M. pura morphospecies; most of them cryptic. While neither of the markers showed an unequivocal barcoding gap between inter- and intraspecific diversity, the overlap was most pronounced for ITS (intraspecific diversity 0-3.5 %, interspecific diversity 0.4 %-8.8 %). A clustering analysis on tEF separated at a 1.5 % level returned all phylogenetic species as Operational Taxonomic Units (OTUs), while ITS at both a 1.5 % level and at a 3 % threshold level not only underestimated diversity as found by the tEF and RPB1, but also identified an OTU which was not a phylogenetic species. Thus, our investigation does not support the universal suitability of ITS for species recognition in particular, and emphasises the general limitation of single gene analyses combined with single percentage separation values.
Copyright © 2013 The British Mycological Society. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Basidiomycete phylogeny; Cryptic speciation; DNA barcode; Phylogenetic congruence; Prunulus

Mesh:

Substances:

Year:  2013        PMID: 24295915     DOI: 10.1016/j.funbio.2013.09.004

Source DB:  PubMed          Journal:  Fungal Biol


  11 in total

1.  Plunging hands into the mushroom jar: a phylogenetic framework for Lyophyllaceae (Agaricales, Basidiomycota).

Authors:  J-M Bellanger; P-A Moreau; G Corriol; A Bidaud; R Chalange; Z Dudova; F Richard
Journal:  Genetica       Date:  2015-02-05       Impact factor: 1.082

2.  Fungal Systematics and Evolution: FUSE 5.

Authors:  Jie Song; Jun-Feng Liang; Mehdi Mehrabi-Koushki; Irmgard Krisai-Greilhuber; Barkat Ali; Vinod Kumar Bhatt; Agustín Cerna-Mendoza; Bin Chen; Zai-Xiong Chen; Hong-Long Chu; Mike Anderson Corazon-Guivin; Gladstone Alves da Silva; André De Kesel; Bálint Dima; Francesco Dovana; Reza Farokhinejad; Guliano Ferisin; Juan Carlos Guerrero-Abad; Ting Guo; Li-Hong Han; Sobia Ilyas; Alfredo Justo; Abdul Nasir Khalid; Sadigheh Khodadadi-Pourarpanahi; Tai-Hui Li; Chao Liu; Marilinda Lorenzini; Jun-Kun Lu; Abdul Samad Mumtaz; Fritz Oehl; Xue-Yu Pan; Viktor Papp; Wu Qian; Abdul Razaq; Kamal C Semwal; Li-Zhou Tang; Xue-Lian Tian; Adela Vallejos-Tapullima; Nicolaas A van der Merwe; Sheng-Kun Wang; Chao-Qun Wang; Rui-Heng Yang; Fei Yu; Giacomo Zapparoli; Ming Zhang; Vladimir Antonín; André Aptroot; Ali Aslan; Arghya Banerjee; Subrata Chatterjee; Alden C Dirks; Leila Ebrahimi; Khalil-Berdi Fotouhifar; Youbert Ghosta; Lyudmila B Kalinina; Dilara Karahan; Jingyu Liu; Mrinal Kumar Maiti; Abhirup Mookherjee; Partha Sarathi Nath; Birendranath Panja; Jayanta Saha; Hana Ševčíková; Hermann Voglmayr; Kenan Yazıcı; Danny Haelewaters
Journal:  Sydowia       Date:  2019-12-23

3.  Elevated Genetic Diversity in the Emerging Blueberry Pathogen Exobasidium maculosum.

Authors:  Jane E Stewart; Kyle Brooks; Phillip M Brannen; William O Cline; Marin T Brewer
Journal:  PLoS One       Date:  2015-07-24       Impact factor: 3.240

Review 4.  Scaling up discovery of hidden diversity in fungi: impacts of barcoding approaches.

Authors:  Rebecca Yahr; Conrad L Schoch; Bryn T M Dentinger
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2016-09-05       Impact factor: 6.237

5.  Assessing intragenomic variation of the internal transcribed spacer two: Adapting the Illumina metagenomics protocol.

Authors:  Lo'ai Alanagreh; Caitlin Pegg; Amritha Harikumar; Mark Buchheim
Journal:  PLoS One       Date:  2017-07-18       Impact factor: 3.240

6.  Diversity of endophytic mycobiota of tropical tree Tectona grandis Linn.f.: Spatiotemporal and tissue type effects.

Authors:  Dheeraj K Singh; Vijay K Sharma; Jitendra Kumar; Ashish Mishra; Satish K Verma; Thomas N Sieber; Ravindra N Kharwar
Journal:  Sci Rep       Date:  2017-06-16       Impact factor: 4.379

7.  Mycobiota of maize seeds revealed by rDNA-ITS sequence analysis of samples with varying storage times.

Authors:  Hui-Qin Xing; Jian-Cang Ma; Bing-Liang Xu; Shu-Wu Zhang; Jin Wang; Li Cao; Xue-Mei Yang
Journal:  Microbiologyopen       Date:  2018-03-23       Impact factor: 3.139

8.  Delimiting cryptic pathogen species causing apple Valsa canker with multilocus data.

Authors:  Xuli Wang; Rui Zang; Zhiyuan Yin; Zhensheng Kang; Lili Huang
Journal:  Ecol Evol       Date:  2014-03-19       Impact factor: 2.912

9.  LAMP Detection Assays for Boxwood Blight Pathogens: A Comparative Genomics Approach.

Authors:  Martha Malapi-Wight; Jill E Demers; Daniel Veltri; Robert E Marra; Jo Anne Crouch
Journal:  Sci Rep       Date:  2016-05-20       Impact factor: 4.379

10.  Local diversity of heathland Cercozoa explored by in-depth sequencing.

Authors:  Christoffer Bugge Harder; Regin Rønn; Asker Brejnrod; David Bass; Waleed Abu Al-Soud; Flemming Ekelund
Journal:  ISME J       Date:  2016-03-08       Impact factor: 10.302

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