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The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium

Wolfiporia cocos (F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos. High-confidence functional prediction was made for 9277 genes among the 10,908 total predicted gene models...

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Autores principales: Luo, Hongmei, Qian, Jun, Xu, Zhichao, Liu, Wanjing, Xu, Lei, Li, Ying, Xu, Jiang, Zhang, Jianhong, Xu, Xiaolan, Liu, Chang, He, Liu, Li, Jianqin, Sun, Chao, Martin, Francis, Song, Jingyuan, Chen, Shilin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8242266/
https://www.ncbi.nlm.nih.gov/pubmed/33359677
http://dx.doi.org/10.1016/j.gpb.2019.01.007
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author Luo, Hongmei
Qian, Jun
Xu, Zhichao
Liu, Wanjing
Xu, Lei
Li, Ying
Xu, Jiang
Zhang, Jianhong
Xu, Xiaolan
Liu, Chang
He, Liu
Li, Jianqin
Sun, Chao
Martin, Francis
Song, Jingyuan
Chen, Shilin
author_facet Luo, Hongmei
Qian, Jun
Xu, Zhichao
Liu, Wanjing
Xu, Lei
Li, Ying
Xu, Jiang
Zhang, Jianhong
Xu, Xiaolan
Liu, Chang
He, Liu
Li, Jianqin
Sun, Chao
Martin, Francis
Song, Jingyuan
Chen, Shilin
author_sort Luo, Hongmei
collection PubMed
description Wolfiporia cocos (F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos. High-confidence functional prediction was made for 9277 genes among the 10,908 total predicted gene models in the W. cocos genome. Up to 2838 differentially expressed genes (DEGs) were identified to be related to sclerotial development by comparing the transcriptomes of mycelial and sclerotial tissues. These DEGs are involved in mating processes, differentiation of fruiting body tissues, and metabolic pathways. A number of genes encoding enzymes and regulatory factors related to polysaccharide and triterpenoid production were strikingly regulated. A potential triterpenoid gene cluster including the signature lanosterol synthase (LSS) gene and its modified components were annotated. In addition, five nonribosomal peptide synthase (NRPS)-like gene clusters, eight polyketide synthase (PKS) gene clusters, and 15 terpene gene clusters were discovered in the genome. The differential expression of the velevt family proteins, transcription factors, carbohydrate-active enzymes, and signaling components indicated their essential roles in the regulation of fungal development and secondary metabolism in W. cocos. These genomic and transcriptomic resources will be valuable for further investigations of the molecular mechanisms controlling sclerotial formation and for its improved medicinal applications.
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spelling pubmed-82422662021-07-02 The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium Luo, Hongmei Qian, Jun Xu, Zhichao Liu, Wanjing Xu, Lei Li, Ying Xu, Jiang Zhang, Jianhong Xu, Xiaolan Liu, Chang He, Liu Li, Jianqin Sun, Chao Martin, Francis Song, Jingyuan Chen, Shilin Genomics Proteomics Bioinformatics Original Research Wolfiporia cocos (F. A. Wolf) has been praised as a food delicacy and medicine for centuries in China. Here, we present the genome and transcriptome of the Chinese strain CGMCC5.78 of W. cocos. High-confidence functional prediction was made for 9277 genes among the 10,908 total predicted gene models in the W. cocos genome. Up to 2838 differentially expressed genes (DEGs) were identified to be related to sclerotial development by comparing the transcriptomes of mycelial and sclerotial tissues. These DEGs are involved in mating processes, differentiation of fruiting body tissues, and metabolic pathways. A number of genes encoding enzymes and regulatory factors related to polysaccharide and triterpenoid production were strikingly regulated. A potential triterpenoid gene cluster including the signature lanosterol synthase (LSS) gene and its modified components were annotated. In addition, five nonribosomal peptide synthase (NRPS)-like gene clusters, eight polyketide synthase (PKS) gene clusters, and 15 terpene gene clusters were discovered in the genome. The differential expression of the velevt family proteins, transcription factors, carbohydrate-active enzymes, and signaling components indicated their essential roles in the regulation of fungal development and secondary metabolism in W. cocos. These genomic and transcriptomic resources will be valuable for further investigations of the molecular mechanisms controlling sclerotial formation and for its improved medicinal applications. Elsevier 2020-08 2020-12-24 /pmc/articles/PMC8242266/ /pubmed/33359677 http://dx.doi.org/10.1016/j.gpb.2019.01.007 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Luo, Hongmei
Qian, Jun
Xu, Zhichao
Liu, Wanjing
Xu, Lei
Li, Ying
Xu, Jiang
Zhang, Jianhong
Xu, Xiaolan
Liu, Chang
He, Liu
Li, Jianqin
Sun, Chao
Martin, Francis
Song, Jingyuan
Chen, Shilin
The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title_full The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title_fullStr The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title_full_unstemmed The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title_short The Wolfiporia cocos Genome and Transcriptome Shed Light on the Formation of Its Edible and Medicinal Sclerotium
title_sort wolfiporia cocos genome and transcriptome shed light on the formation of its edible and medicinal sclerotium
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8242266/
https://www.ncbi.nlm.nih.gov/pubmed/33359677
http://dx.doi.org/10.1016/j.gpb.2019.01.007
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