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Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle

Desert truffles are edible hypogeous fungi forming ectendomycorrhizal symbiosis with plants of Cistaceae family. Knowledge about the reproductive modes of these fungi and the molecular mechanisms driving the ectendomycorrhizal interaction is lacking. Genomes of the highly appreciated edible desert t...

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Autores principales: Marqués‐Gálvez, José Eduardo, Miyauchi, Shingo, Paolocci, Francesco, Navarro‐Ródenas, Alfonso, Arenas, Francisco, Pérez‐Gilabert, Manuela, Morin, Emmanuelle, Auer, Lucas, Barry, Kerrie W., Kuo, Alan, Grigoriev, Igor V., Martin, Francis M., Kohler, Annegret, Morte, Asunción
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898904/
https://www.ncbi.nlm.nih.gov/pubmed/33118170
http://dx.doi.org/10.1111/nph.17044
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author Marqués‐Gálvez, José Eduardo
Miyauchi, Shingo
Paolocci, Francesco
Navarro‐Ródenas, Alfonso
Arenas, Francisco
Pérez‐Gilabert, Manuela
Morin, Emmanuelle
Auer, Lucas
Barry, Kerrie W.
Kuo, Alan
Grigoriev, Igor V.
Martin, Francis M.
Kohler, Annegret
Morte, Asunción
author_facet Marqués‐Gálvez, José Eduardo
Miyauchi, Shingo
Paolocci, Francesco
Navarro‐Ródenas, Alfonso
Arenas, Francisco
Pérez‐Gilabert, Manuela
Morin, Emmanuelle
Auer, Lucas
Barry, Kerrie W.
Kuo, Alan
Grigoriev, Igor V.
Martin, Francis M.
Kohler, Annegret
Morte, Asunción
author_sort Marqués‐Gálvez, José Eduardo
collection PubMed
description Desert truffles are edible hypogeous fungi forming ectendomycorrhizal symbiosis with plants of Cistaceae family. Knowledge about the reproductive modes of these fungi and the molecular mechanisms driving the ectendomycorrhizal interaction is lacking. Genomes of the highly appreciated edible desert truffles Terfezia claveryi Chatin and Tirmania nivea Trappe have been sequenced and compared with other Pezizomycetes. Transcriptomes of T. claveryi × Helianthemum almeriense mycorrhiza from well‐watered and drought‐stressed plants, when intracellular colonizations is promoted, were investigated. We have identified the fungal genes related to sexual reproduction in desert truffles and desert‐truffles‐specific genomic and secretomic features with respect to other Pezizomycetes, such as the expansion of a large set of gene families with unknown Pfam domains and a number of species or desert‐truffle‐specific small secreted proteins differentially regulated in symbiosis. A core set of plant genes, including carbohydrate, lipid‐metabolism, and defence‐related genes, differentially expressed in mycorrhiza under both conditions was found. Our results highlight the singularities of desert truffles with respect to other mycorrhizal fungi while providing a first glimpse on plant and fungal determinants involved in ecto to endo symbiotic switch that occurs in desert truffle under dry conditions.
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spelling pubmed-78989042021-03-03 Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle Marqués‐Gálvez, José Eduardo Miyauchi, Shingo Paolocci, Francesco Navarro‐Ródenas, Alfonso Arenas, Francisco Pérez‐Gilabert, Manuela Morin, Emmanuelle Auer, Lucas Barry, Kerrie W. Kuo, Alan Grigoriev, Igor V. Martin, Francis M. Kohler, Annegret Morte, Asunción New Phytol Research Desert truffles are edible hypogeous fungi forming ectendomycorrhizal symbiosis with plants of Cistaceae family. Knowledge about the reproductive modes of these fungi and the molecular mechanisms driving the ectendomycorrhizal interaction is lacking. Genomes of the highly appreciated edible desert truffles Terfezia claveryi Chatin and Tirmania nivea Trappe have been sequenced and compared with other Pezizomycetes. Transcriptomes of T. claveryi × Helianthemum almeriense mycorrhiza from well‐watered and drought‐stressed plants, when intracellular colonizations is promoted, were investigated. We have identified the fungal genes related to sexual reproduction in desert truffles and desert‐truffles‐specific genomic and secretomic features with respect to other Pezizomycetes, such as the expansion of a large set of gene families with unknown Pfam domains and a number of species or desert‐truffle‐specific small secreted proteins differentially regulated in symbiosis. A core set of plant genes, including carbohydrate, lipid‐metabolism, and defence‐related genes, differentially expressed in mycorrhiza under both conditions was found. Our results highlight the singularities of desert truffles with respect to other mycorrhizal fungi while providing a first glimpse on plant and fungal determinants involved in ecto to endo symbiotic switch that occurs in desert truffle under dry conditions. John Wiley and Sons Inc. 2020-12-10 2021-03 /pmc/articles/PMC7898904/ /pubmed/33118170 http://dx.doi.org/10.1111/nph.17044 Text en ©2020 The Authors New Phytologist ©2020 New Phytologist Foundation This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research
Marqués‐Gálvez, José Eduardo
Miyauchi, Shingo
Paolocci, Francesco
Navarro‐Ródenas, Alfonso
Arenas, Francisco
Pérez‐Gilabert, Manuela
Morin, Emmanuelle
Auer, Lucas
Barry, Kerrie W.
Kuo, Alan
Grigoriev, Igor V.
Martin, Francis M.
Kohler, Annegret
Morte, Asunción
Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title_full Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title_fullStr Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title_full_unstemmed Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title_short Desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
title_sort desert truffle genomes reveal their reproductive modes and new insights into plant–fungal interaction and ectendomycorrhizal lifestyle
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7898904/
https://www.ncbi.nlm.nih.gov/pubmed/33118170
http://dx.doi.org/10.1111/nph.17044
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