Cargando…

Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales

Ericaceae (the heath family) are widely distributed calcifuges inhabiting soils with inherently poor nutrient status. Ericaceae overcome nutrient limitation through symbiosis with ericoid mycorrhizal (ErM) fungi that mobilize nutrients complexed in recalcitrant organic matter. At present, recognized...

Descripción completa

Detalles Bibliográficos
Autores principales: Vohník, Martin, Sadowsky, Jesse J., Kohout, Petr, Lhotáková, Zuzana, Nestby, Rolf, Kolařík, Miroslav
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382583/
https://www.ncbi.nlm.nih.gov/pubmed/22761814
http://dx.doi.org/10.1371/journal.pone.0039524
_version_ 1782236509402824704
author Vohník, Martin
Sadowsky, Jesse J.
Kohout, Petr
Lhotáková, Zuzana
Nestby, Rolf
Kolařík, Miroslav
author_facet Vohník, Martin
Sadowsky, Jesse J.
Kohout, Petr
Lhotáková, Zuzana
Nestby, Rolf
Kolařík, Miroslav
author_sort Vohník, Martin
collection PubMed
description Ericaceae (the heath family) are widely distributed calcifuges inhabiting soils with inherently poor nutrient status. Ericaceae overcome nutrient limitation through symbiosis with ericoid mycorrhizal (ErM) fungi that mobilize nutrients complexed in recalcitrant organic matter. At present, recognized ErM fungi include a narrow taxonomic range within the Ascomycota, and the Sebacinales, basal Hymenomycetes with unclamped hyphae and imperforate parenthesomes. Here we describe a novel type of basidiomycetous ErM symbiosis, termed ‘sheathed ericoid mycorrhiza’, discovered in two habitats in mid-Norway as a co-dominant mycorrhizal symbiosis in Vaccinium spp. The basidiomycete forming sheathed ErM possesses clamped hyphae with perforate parenthesomes, produces 1- to 3-layer sheaths around terminal parts of hair roots and colonizes their rhizodermis intracellularly forming hyphal coils typical for ErM symbiosis. Two basidiomycetous isolates were obtained from sheathed ErM and molecular and phylogenetic tools were used to determine their identity; they were also examined for the ability to form sheathed ErM and lignocellulolytic potential. Surprisingly, ITS rDNA of both conspecific isolates failed to amplify with the most commonly used primer pairs, including ITS1 and ITS1F + ITS4. Phylogenetic analysis of nuclear LSU, SSU and 5.8S rDNA indicates that the basidiomycete occupies a long branch residing in the proximity of Trechisporales and Hymenochaetales, but lacks a clear sequence relationship (>90% similarity) to fungi currently placed in these orders. The basidiomycete formed the characteristic sheathed ErM symbiosis and enhanced growth of Vaccinium spp. in vitro, and degraded a recalcitrant aromatic substrate that was left unaltered by common ErM ascomycetes. Our findings provide coherent evidence that this hitherto undescribed basidiomycete forms a morphologically distinct ErM symbiosis that may occur at significant levels under natural conditions, yet remain undetected when subject to amplification by ‘universal’ primers. The lignocellulolytic assay suggests the basidiomycete may confer host adaptations distinct from those provisioned by the so far investigated ascomycetous ErM fungi.
format Online
Article
Text
id pubmed-3382583
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33825832012-07-03 Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales Vohník, Martin Sadowsky, Jesse J. Kohout, Petr Lhotáková, Zuzana Nestby, Rolf Kolařík, Miroslav PLoS One Research Article Ericaceae (the heath family) are widely distributed calcifuges inhabiting soils with inherently poor nutrient status. Ericaceae overcome nutrient limitation through symbiosis with ericoid mycorrhizal (ErM) fungi that mobilize nutrients complexed in recalcitrant organic matter. At present, recognized ErM fungi include a narrow taxonomic range within the Ascomycota, and the Sebacinales, basal Hymenomycetes with unclamped hyphae and imperforate parenthesomes. Here we describe a novel type of basidiomycetous ErM symbiosis, termed ‘sheathed ericoid mycorrhiza’, discovered in two habitats in mid-Norway as a co-dominant mycorrhizal symbiosis in Vaccinium spp. The basidiomycete forming sheathed ErM possesses clamped hyphae with perforate parenthesomes, produces 1- to 3-layer sheaths around terminal parts of hair roots and colonizes their rhizodermis intracellularly forming hyphal coils typical for ErM symbiosis. Two basidiomycetous isolates were obtained from sheathed ErM and molecular and phylogenetic tools were used to determine their identity; they were also examined for the ability to form sheathed ErM and lignocellulolytic potential. Surprisingly, ITS rDNA of both conspecific isolates failed to amplify with the most commonly used primer pairs, including ITS1 and ITS1F + ITS4. Phylogenetic analysis of nuclear LSU, SSU and 5.8S rDNA indicates that the basidiomycete occupies a long branch residing in the proximity of Trechisporales and Hymenochaetales, but lacks a clear sequence relationship (>90% similarity) to fungi currently placed in these orders. The basidiomycete formed the characteristic sheathed ErM symbiosis and enhanced growth of Vaccinium spp. in vitro, and degraded a recalcitrant aromatic substrate that was left unaltered by common ErM ascomycetes. Our findings provide coherent evidence that this hitherto undescribed basidiomycete forms a morphologically distinct ErM symbiosis that may occur at significant levels under natural conditions, yet remain undetected when subject to amplification by ‘universal’ primers. The lignocellulolytic assay suggests the basidiomycete may confer host adaptations distinct from those provisioned by the so far investigated ascomycetous ErM fungi. Public Library of Science 2012-06-25 /pmc/articles/PMC3382583/ /pubmed/22761814 http://dx.doi.org/10.1371/journal.pone.0039524 Text en Vohník et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vohník, Martin
Sadowsky, Jesse J.
Kohout, Petr
Lhotáková, Zuzana
Nestby, Rolf
Kolařík, Miroslav
Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title_full Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title_fullStr Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title_full_unstemmed Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title_short Novel Root-Fungus Symbiosis in Ericaceae: Sheathed Ericoid Mycorrhiza Formed by a Hitherto Undescribed Basidiomycete with Affinities to Trechisporales
title_sort novel root-fungus symbiosis in ericaceae: sheathed ericoid mycorrhiza formed by a hitherto undescribed basidiomycete with affinities to trechisporales
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3382583/
https://www.ncbi.nlm.nih.gov/pubmed/22761814
http://dx.doi.org/10.1371/journal.pone.0039524
work_keys_str_mv AT vohnikmartin novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales
AT sadowskyjessej novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales
AT kohoutpetr novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales
AT lhotakovazuzana novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales
AT nestbyrolf novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales
AT kolarikmiroslav novelrootfungussymbiosisinericaceaesheathedericoidmycorrhizaformedbyahithertoundescribedbasidiomycetewithaffinitiestotrechisporales