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Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species

The genus Pleurotus is one of the most widely cultivated and edible mushrooms with various cultivators. Three molecular characteristics were used to evaluate the genetic diversity of 132 tested samples. Phylogenetic analysis showed five clades for tested samples of the genus Pleurotus by the combine...

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Autores principales: Lin, Pei, Yan, Zheng-Fei, Kook, MooChang, Li, Chang-Tian, Yi, Tae-Hoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8783721/
https://www.ncbi.nlm.nih.gov/pubmed/35075427
http://dx.doi.org/10.1155/2022/6068185
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author Lin, Pei
Yan, Zheng-Fei
Kook, MooChang
Li, Chang-Tian
Yi, Tae-Hoo
author_facet Lin, Pei
Yan, Zheng-Fei
Kook, MooChang
Li, Chang-Tian
Yi, Tae-Hoo
author_sort Lin, Pei
collection PubMed
description The genus Pleurotus is one of the most widely cultivated and edible mushrooms with various cultivators. Three molecular characteristics were used to evaluate the genetic diversity of 132 tested samples. Phylogenetic analysis showed five clades for tested samples of the genus Pleurotus by the combined ITS and LSU sequences with strong bootstraps and Bayesian posterior probability supports. A total of 94 polymorphic fragments ranging from 10 to 100 bp were observed by using an intersimple sequence repeat (ISSR) marker. The DNA fragment pattern showed that P. ostreatus cultivator (strain P9) was clearly distinguished from wild strain based on their clear banding profiles produced. DNA GC content of the genus Pleurotus varied from 55.6 mol% to 43.3 mol%. Their chemical composition was also determined, including sugar, amino acid, polar lipid, mycolic acid, quinone, and fatty acid, which presented some high homogeneity. Most of the tested samples contained mycolic acid; glucose and arabinose as the main sugars; aspartic acid, arginine, lysine, tyrosine, and alanine as the main amino acids; and C(16:0), C(18:0), C(18:2)cis-9,12, anteiso-C(14:0), and summed feature 8 as the main fatty acids. In addition, their polar lipid profiles were investigated for the first time, which significantly varied among Pleurotus species. The genus Pleurotus contained menaquinone-6 as the sole respiratory quinone, which showed a significant difference with that of its closely related genera. These results of this study demonstrated that the combined method above could efficiently differentiate each Pleurotus species and thus be considered an efficient tool for surveying the genetic diversity of the genus Pleurotus.
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spelling pubmed-87837212022-01-23 Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species Lin, Pei Yan, Zheng-Fei Kook, MooChang Li, Chang-Tian Yi, Tae-Hoo Biomed Res Int Research Article The genus Pleurotus is one of the most widely cultivated and edible mushrooms with various cultivators. Three molecular characteristics were used to evaluate the genetic diversity of 132 tested samples. Phylogenetic analysis showed five clades for tested samples of the genus Pleurotus by the combined ITS and LSU sequences with strong bootstraps and Bayesian posterior probability supports. A total of 94 polymorphic fragments ranging from 10 to 100 bp were observed by using an intersimple sequence repeat (ISSR) marker. The DNA fragment pattern showed that P. ostreatus cultivator (strain P9) was clearly distinguished from wild strain based on their clear banding profiles produced. DNA GC content of the genus Pleurotus varied from 55.6 mol% to 43.3 mol%. Their chemical composition was also determined, including sugar, amino acid, polar lipid, mycolic acid, quinone, and fatty acid, which presented some high homogeneity. Most of the tested samples contained mycolic acid; glucose and arabinose as the main sugars; aspartic acid, arginine, lysine, tyrosine, and alanine as the main amino acids; and C(16:0), C(18:0), C(18:2)cis-9,12, anteiso-C(14:0), and summed feature 8 as the main fatty acids. In addition, their polar lipid profiles were investigated for the first time, which significantly varied among Pleurotus species. The genus Pleurotus contained menaquinone-6 as the sole respiratory quinone, which showed a significant difference with that of its closely related genera. These results of this study demonstrated that the combined method above could efficiently differentiate each Pleurotus species and thus be considered an efficient tool for surveying the genetic diversity of the genus Pleurotus. Hindawi 2022-01-15 /pmc/articles/PMC8783721/ /pubmed/35075427 http://dx.doi.org/10.1155/2022/6068185 Text en Copyright © 2022 Pei Lin et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lin, Pei
Yan, Zheng-Fei
Kook, MooChang
Li, Chang-Tian
Yi, Tae-Hoo
Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title_full Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title_fullStr Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title_full_unstemmed Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title_short Genetic and Chemical Diversity of Edible Mushroom Pleurotus Species
title_sort genetic and chemical diversity of edible mushroom pleurotus species
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8783721/
https://www.ncbi.nlm.nih.gov/pubmed/35075427
http://dx.doi.org/10.1155/2022/6068185
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