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The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation

BACKGROUND: Ganoderma lucidum (Reishi or Ling Zhi) is one of the most famous Traditional Chinese Medicines and has been widely used in the treatment of various human diseases in Asia countries. It is also a fungus with strong wood degradation ability with potential in bioenergy production. However,...

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Autores principales: Liu, Dongbo, Gong, Jing, Dai, Wenkui, Kang, Xincong, Huang, Zhuo, Zhang, Hong-Mei, Liu, Wei, Liu, Le, Ma, Junping, Xia, Zhilan, Chen, Yuxin, Chen, Yuewen, Wang, Depeng, Ni, Peixiang, Guo, An-Yuan, Xiong, Xingyao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342255/
https://www.ncbi.nlm.nih.gov/pubmed/22567134
http://dx.doi.org/10.1371/journal.pone.0036146
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author Liu, Dongbo
Gong, Jing
Dai, Wenkui
Kang, Xincong
Huang, Zhuo
Zhang, Hong-Mei
Liu, Wei
Liu, Le
Ma, Junping
Xia, Zhilan
Chen, Yuxin
Chen, Yuewen
Wang, Depeng
Ni, Peixiang
Guo, An-Yuan
Xiong, Xingyao
author_facet Liu, Dongbo
Gong, Jing
Dai, Wenkui
Kang, Xincong
Huang, Zhuo
Zhang, Hong-Mei
Liu, Wei
Liu, Le
Ma, Junping
Xia, Zhilan
Chen, Yuxin
Chen, Yuewen
Wang, Depeng
Ni, Peixiang
Guo, An-Yuan
Xiong, Xingyao
author_sort Liu, Dongbo
collection PubMed
description BACKGROUND: Ganoderma lucidum (Reishi or Ling Zhi) is one of the most famous Traditional Chinese Medicines and has been widely used in the treatment of various human diseases in Asia countries. It is also a fungus with strong wood degradation ability with potential in bioenergy production. However, genes, pathways and mechanisms of these functions are still unknown. METHODOLOGY/PRINCIPAL FINDINGS: The genome of G. lucidum was sequenced and assembled into a 39.9 megabases (Mb) draft genome, which encoded 12,080 protein-coding genes and ∼83% of them were similar to public sequences. We performed comprehensive annotation for G. lucidum genes and made comparisons with genes in other fungi genomes. Genes in the biosynthesis of the main G. lucidum active ingredients, ganoderic acids (GAs), were characterized. Among the GAs synthases, we identified a fusion gene, the N and C terminal of which are homologous to two different enzymes. Moreover, the fusion gene was only found in basidiomycetes. As a white rot fungus with wood degradation ability, abundant carbohydrate-active enzymes and ligninolytic enzymes were identified in the G. lucidum genome and were compared with other fungi. CONCLUSIONS/SIGNIFICANCE: The genome sequence and well annotation of G. lucidum will provide new insights in function analyses including its medicinal mechanism. The characterization of genes in the triterpene biosynthesis and wood degradation will facilitate bio-engineering research in the production of its active ingredients and bioenergy.
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spelling pubmed-33422552012-05-07 The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation Liu, Dongbo Gong, Jing Dai, Wenkui Kang, Xincong Huang, Zhuo Zhang, Hong-Mei Liu, Wei Liu, Le Ma, Junping Xia, Zhilan Chen, Yuxin Chen, Yuewen Wang, Depeng Ni, Peixiang Guo, An-Yuan Xiong, Xingyao PLoS One Research Article BACKGROUND: Ganoderma lucidum (Reishi or Ling Zhi) is one of the most famous Traditional Chinese Medicines and has been widely used in the treatment of various human diseases in Asia countries. It is also a fungus with strong wood degradation ability with potential in bioenergy production. However, genes, pathways and mechanisms of these functions are still unknown. METHODOLOGY/PRINCIPAL FINDINGS: The genome of G. lucidum was sequenced and assembled into a 39.9 megabases (Mb) draft genome, which encoded 12,080 protein-coding genes and ∼83% of them were similar to public sequences. We performed comprehensive annotation for G. lucidum genes and made comparisons with genes in other fungi genomes. Genes in the biosynthesis of the main G. lucidum active ingredients, ganoderic acids (GAs), were characterized. Among the GAs synthases, we identified a fusion gene, the N and C terminal of which are homologous to two different enzymes. Moreover, the fusion gene was only found in basidiomycetes. As a white rot fungus with wood degradation ability, abundant carbohydrate-active enzymes and ligninolytic enzymes were identified in the G. lucidum genome and were compared with other fungi. CONCLUSIONS/SIGNIFICANCE: The genome sequence and well annotation of G. lucidum will provide new insights in function analyses including its medicinal mechanism. The characterization of genes in the triterpene biosynthesis and wood degradation will facilitate bio-engineering research in the production of its active ingredients and bioenergy. Public Library of Science 2012-05-02 /pmc/articles/PMC3342255/ /pubmed/22567134 http://dx.doi.org/10.1371/journal.pone.0036146 Text en Liu 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
Liu, Dongbo
Gong, Jing
Dai, Wenkui
Kang, Xincong
Huang, Zhuo
Zhang, Hong-Mei
Liu, Wei
Liu, Le
Ma, Junping
Xia, Zhilan
Chen, Yuxin
Chen, Yuewen
Wang, Depeng
Ni, Peixiang
Guo, An-Yuan
Xiong, Xingyao
The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title_full The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title_fullStr The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title_full_unstemmed The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title_short The Genome of Ganderma lucidum Provide Insights into Triterpense Biosynthesis and Wood Degradation
title_sort genome of ganderma lucidum provide insights into triterpense biosynthesis and wood degradation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3342255/
https://www.ncbi.nlm.nih.gov/pubmed/22567134
http://dx.doi.org/10.1371/journal.pone.0036146
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