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Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus

Nuclei of arbuscular endomycorrhizal fungi have been described as highly diverse due to their asexual nature and absence of a single cell stage with only one nucleus. This has raised fundamental questions concerning speciation, selection and transmission of the genetic make-up to next generations. A...

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Autores principales: Lin, Kui, Limpens, Erik, Zhang, Zhonghua, Ivanov, Sergey, Saunders, Diane G. O., Mu, Desheng, Pang, Erli, Cao, Huifen, Cha, Hwangho, Lin, Tao, Zhou, Qian, Shang, Yi, Li, Ying, Sharma, Trupti, van Velzen, Robin, de Ruijter, Norbert, Aanen, Duur K., Win, Joe, Kamoun, Sophien, Bisseling, Ton, Geurts, René, Huang, Sanwen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3886924/
https://www.ncbi.nlm.nih.gov/pubmed/24415955
http://dx.doi.org/10.1371/journal.pgen.1004078
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author Lin, Kui
Limpens, Erik
Zhang, Zhonghua
Ivanov, Sergey
Saunders, Diane G. O.
Mu, Desheng
Pang, Erli
Cao, Huifen
Cha, Hwangho
Lin, Tao
Zhou, Qian
Shang, Yi
Li, Ying
Sharma, Trupti
van Velzen, Robin
de Ruijter, Norbert
Aanen, Duur K.
Win, Joe
Kamoun, Sophien
Bisseling, Ton
Geurts, René
Huang, Sanwen
author_facet Lin, Kui
Limpens, Erik
Zhang, Zhonghua
Ivanov, Sergey
Saunders, Diane G. O.
Mu, Desheng
Pang, Erli
Cao, Huifen
Cha, Hwangho
Lin, Tao
Zhou, Qian
Shang, Yi
Li, Ying
Sharma, Trupti
van Velzen, Robin
de Ruijter, Norbert
Aanen, Duur K.
Win, Joe
Kamoun, Sophien
Bisseling, Ton
Geurts, René
Huang, Sanwen
author_sort Lin, Kui
collection PubMed
description Nuclei of arbuscular endomycorrhizal fungi have been described as highly diverse due to their asexual nature and absence of a single cell stage with only one nucleus. This has raised fundamental questions concerning speciation, selection and transmission of the genetic make-up to next generations. Although this concept has become textbook knowledge, it is only based on studying a few loci, including 45S rDNA. To provide a more comprehensive insight into the genetic makeup of arbuscular endomycorrhizal fungi, we applied de novo genome sequencing of individual nuclei of Rhizophagus irregularis. This revealed a surprisingly low level of polymorphism between nuclei. In contrast, within a nucleus, the 45S rDNA repeat unit turned out to be highly diverged. This finding demystifies a long-lasting hypothesis on the complex genetic makeup of arbuscular endomycorrhizal fungi. Subsequent genome assembly resulted in the first draft reference genome sequence of an arbuscular endomycorrhizal fungus. Its length is 141 Mbps, representing over 27,000 protein-coding gene models. We used the genomic sequence to reinvestigate the phylogenetic relationships of Rhizophagus irregularis with other fungal phyla. This unambiguously demonstrated that Glomeromycota are more closely related to Mucoromycotina than to its postulated sister Dikarya.
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spelling pubmed-38869242014-01-10 Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus Lin, Kui Limpens, Erik Zhang, Zhonghua Ivanov, Sergey Saunders, Diane G. O. Mu, Desheng Pang, Erli Cao, Huifen Cha, Hwangho Lin, Tao Zhou, Qian Shang, Yi Li, Ying Sharma, Trupti van Velzen, Robin de Ruijter, Norbert Aanen, Duur K. Win, Joe Kamoun, Sophien Bisseling, Ton Geurts, René Huang, Sanwen PLoS Genet Research Article Nuclei of arbuscular endomycorrhizal fungi have been described as highly diverse due to their asexual nature and absence of a single cell stage with only one nucleus. This has raised fundamental questions concerning speciation, selection and transmission of the genetic make-up to next generations. Although this concept has become textbook knowledge, it is only based on studying a few loci, including 45S rDNA. To provide a more comprehensive insight into the genetic makeup of arbuscular endomycorrhizal fungi, we applied de novo genome sequencing of individual nuclei of Rhizophagus irregularis. This revealed a surprisingly low level of polymorphism between nuclei. In contrast, within a nucleus, the 45S rDNA repeat unit turned out to be highly diverged. This finding demystifies a long-lasting hypothesis on the complex genetic makeup of arbuscular endomycorrhizal fungi. Subsequent genome assembly resulted in the first draft reference genome sequence of an arbuscular endomycorrhizal fungus. Its length is 141 Mbps, representing over 27,000 protein-coding gene models. We used the genomic sequence to reinvestigate the phylogenetic relationships of Rhizophagus irregularis with other fungal phyla. This unambiguously demonstrated that Glomeromycota are more closely related to Mucoromycotina than to its postulated sister Dikarya. Public Library of Science 2014-01-09 /pmc/articles/PMC3886924/ /pubmed/24415955 http://dx.doi.org/10.1371/journal.pgen.1004078 Text en © 2014 Lin 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
Lin, Kui
Limpens, Erik
Zhang, Zhonghua
Ivanov, Sergey
Saunders, Diane G. O.
Mu, Desheng
Pang, Erli
Cao, Huifen
Cha, Hwangho
Lin, Tao
Zhou, Qian
Shang, Yi
Li, Ying
Sharma, Trupti
van Velzen, Robin
de Ruijter, Norbert
Aanen, Duur K.
Win, Joe
Kamoun, Sophien
Bisseling, Ton
Geurts, René
Huang, Sanwen
Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title_full Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title_fullStr Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title_full_unstemmed Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title_short Single Nucleus Genome Sequencing Reveals High Similarity among Nuclei of an Endomycorrhizal Fungus
title_sort single nucleus genome sequencing reveals high similarity among nuclei of an endomycorrhizal fungus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3886924/
https://www.ncbi.nlm.nih.gov/pubmed/24415955
http://dx.doi.org/10.1371/journal.pgen.1004078
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