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Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development

Phlebopus portentosus (Berk. and Broome) Boedijin, a widely consumed mushroom in China and Thailand, is the first species in the order Boletaceae to have been industrially cultivated on a large scale. However, to date, the lignocellulose degradation system and molecular basis of fruiting body develo...

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Autores principales: Wan, Jia-Ning, Li, Yan, Guo, Ting, Ji, Guang-Yan, Luo, Shun-Zhen, Ji, Kai-Ping, Cao, Yang, Tan, Qi, Bao, Da-Peng, Yang, Rui-Heng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8511702/
https://www.ncbi.nlm.nih.gov/pubmed/34659161
http://dx.doi.org/10.3389/fmicb.2021.732458
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author Wan, Jia-Ning
Li, Yan
Guo, Ting
Ji, Guang-Yan
Luo, Shun-Zhen
Ji, Kai-Ping
Cao, Yang
Tan, Qi
Bao, Da-Peng
Yang, Rui-Heng
author_facet Wan, Jia-Ning
Li, Yan
Guo, Ting
Ji, Guang-Yan
Luo, Shun-Zhen
Ji, Kai-Ping
Cao, Yang
Tan, Qi
Bao, Da-Peng
Yang, Rui-Heng
author_sort Wan, Jia-Ning
collection PubMed
description Phlebopus portentosus (Berk. and Broome) Boedijin, a widely consumed mushroom in China and Thailand, is the first species in the order Boletaceae to have been industrially cultivated on a large scale. However, to date, the lignocellulose degradation system and molecular basis of fruiting body development in P. portentosus have remained cryptic. In the present study, genome and transcriptome sequencing of P. portentosus was performed during the mycelium (S), primordium (P), and fruiting body (F) stages. A genome of 32.74 Mb with a 48.92% GC content across 62 scaffolds was obtained. A total of 9,464 putative genes were predicted from the genome, of which the number of genes related to plant cell wall-degrading enzymes was much lower than that of some saprophytic mushrooms with specific ectomycorrhizal niches. Principal component analysis of RNA-Seq data revealed that the gene expression profiles at all three stages were different. The low expression of plant cell wall-degrading genes also confirmed the limited ability to degrade lignocellulose. The expression profiles also revealed that some conserved and specific pathways were enriched in the different developmental stages of P. portentosus. Starch and sucrose metabolic pathways were enriched in the mycelium stage, while DNA replication, the proteasome and MAPK signaling pathways may be associated with maturation. These results provide a new perspective for understanding the key pathways and hub genes involved in P. portentosus development.
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spelling pubmed-85117022021-10-14 Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development Wan, Jia-Ning Li, Yan Guo, Ting Ji, Guang-Yan Luo, Shun-Zhen Ji, Kai-Ping Cao, Yang Tan, Qi Bao, Da-Peng Yang, Rui-Heng Front Microbiol Microbiology Phlebopus portentosus (Berk. and Broome) Boedijin, a widely consumed mushroom in China and Thailand, is the first species in the order Boletaceae to have been industrially cultivated on a large scale. However, to date, the lignocellulose degradation system and molecular basis of fruiting body development in P. portentosus have remained cryptic. In the present study, genome and transcriptome sequencing of P. portentosus was performed during the mycelium (S), primordium (P), and fruiting body (F) stages. A genome of 32.74 Mb with a 48.92% GC content across 62 scaffolds was obtained. A total of 9,464 putative genes were predicted from the genome, of which the number of genes related to plant cell wall-degrading enzymes was much lower than that of some saprophytic mushrooms with specific ectomycorrhizal niches. Principal component analysis of RNA-Seq data revealed that the gene expression profiles at all three stages were different. The low expression of plant cell wall-degrading genes also confirmed the limited ability to degrade lignocellulose. The expression profiles also revealed that some conserved and specific pathways were enriched in the different developmental stages of P. portentosus. Starch and sucrose metabolic pathways were enriched in the mycelium stage, while DNA replication, the proteasome and MAPK signaling pathways may be associated with maturation. These results provide a new perspective for understanding the key pathways and hub genes involved in P. portentosus development. Frontiers Media S.A. 2021-09-29 /pmc/articles/PMC8511702/ /pubmed/34659161 http://dx.doi.org/10.3389/fmicb.2021.732458 Text en Copyright © 2021 Wan, Li, Guo, Ji, Luo, Ji, Cao, Tan, Bao and Yang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Wan, Jia-Ning
Li, Yan
Guo, Ting
Ji, Guang-Yan
Luo, Shun-Zhen
Ji, Kai-Ping
Cao, Yang
Tan, Qi
Bao, Da-Peng
Yang, Rui-Heng
Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title_full Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title_fullStr Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title_full_unstemmed Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title_short Whole-Genome and Transcriptome Sequencing of Phlebopus portentosus Reveals Its Associated Ectomycorrhizal Niche and Conserved Pathways Involved in Fruiting Body Development
title_sort whole-genome and transcriptome sequencing of phlebopus portentosus reveals its associated ectomycorrhizal niche and conserved pathways involved in fruiting body development
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8511702/
https://www.ncbi.nlm.nih.gov/pubmed/34659161
http://dx.doi.org/10.3389/fmicb.2021.732458
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