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Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure

Extremophilic organisms demonstrate the flexibility and adaptability of basic biological processes by highlighting how cell physiology adapts to environmental extremes. Few eukaryotic extremophiles have been well studied and only a small number are amenable to laboratory cultivation and manipulation...

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Autores principales: Sinha, Sunita, Flibotte, Stephane, Neira, Mauricio, Formby, Sean, Plemenitaš, Ana, Cimerman, Nina Gunde, Lenassi, Metka, Gostinčar, Cene, Stajich, Jason E., Nislow, Corey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5499112/
https://www.ncbi.nlm.nih.gov/pubmed/28500048
http://dx.doi.org/10.1534/g3.117.040691
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author Sinha, Sunita
Flibotte, Stephane
Neira, Mauricio
Formby, Sean
Plemenitaš, Ana
Cimerman, Nina Gunde
Lenassi, Metka
Gostinčar, Cene
Stajich, Jason E.
Nislow, Corey
author_facet Sinha, Sunita
Flibotte, Stephane
Neira, Mauricio
Formby, Sean
Plemenitaš, Ana
Cimerman, Nina Gunde
Lenassi, Metka
Gostinčar, Cene
Stajich, Jason E.
Nislow, Corey
author_sort Sinha, Sunita
collection PubMed
description Extremophilic organisms demonstrate the flexibility and adaptability of basic biological processes by highlighting how cell physiology adapts to environmental extremes. Few eukaryotic extremophiles have been well studied and only a small number are amenable to laboratory cultivation and manipulation. A detailed characterization of the genome architecture of such organisms is important to illuminate how they adapt to environmental stresses. One excellent example of a fungal extremophile is the halophile Hortaea werneckii (Pezizomycotina, Dothideomycetes, Capnodiales), a yeast-like fungus able to thrive at near-saturating concentrations of sodium chloride and which is also tolerant to both UV irradiation and desiccation. Given its unique lifestyle and its remarkably recent whole genome duplication, H. werneckii provides opportunities for testing the role of genome duplications and adaptability to extreme environments. We previously assembled the genome of H. werneckii using short-read sequencing technology and found a remarkable degree of gene duplication. Technology limitations, however, precluded high-confidence annotation of the entire genome. We therefore revisited the H. wernickii genome using long-read, single-molecule sequencing and provide an improved genome assembly which, combined with transcriptome and nucleosome analysis, provides a useful resource for fungal halophile genomics. Remarkably, the ∼50 Mb H. wernickii genome contains 15,974 genes of which 95% (7608) are duplicates formed by a recent whole genome duplication (WGD), with an average of 5% protein sequence divergence between them. We found that the WGD is extraordinarily recent, and compared to Saccharomyces cerevisiae, the majority of the genome’s ohnologs have not diverged at the level of gene expression of chromatin structure.
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spelling pubmed-54991122017-07-07 Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure Sinha, Sunita Flibotte, Stephane Neira, Mauricio Formby, Sean Plemenitaš, Ana Cimerman, Nina Gunde Lenassi, Metka Gostinčar, Cene Stajich, Jason E. Nislow, Corey G3 (Bethesda) Genome Report Extremophilic organisms demonstrate the flexibility and adaptability of basic biological processes by highlighting how cell physiology adapts to environmental extremes. Few eukaryotic extremophiles have been well studied and only a small number are amenable to laboratory cultivation and manipulation. A detailed characterization of the genome architecture of such organisms is important to illuminate how they adapt to environmental stresses. One excellent example of a fungal extremophile is the halophile Hortaea werneckii (Pezizomycotina, Dothideomycetes, Capnodiales), a yeast-like fungus able to thrive at near-saturating concentrations of sodium chloride and which is also tolerant to both UV irradiation and desiccation. Given its unique lifestyle and its remarkably recent whole genome duplication, H. werneckii provides opportunities for testing the role of genome duplications and adaptability to extreme environments. We previously assembled the genome of H. werneckii using short-read sequencing technology and found a remarkable degree of gene duplication. Technology limitations, however, precluded high-confidence annotation of the entire genome. We therefore revisited the H. wernickii genome using long-read, single-molecule sequencing and provide an improved genome assembly which, combined with transcriptome and nucleosome analysis, provides a useful resource for fungal halophile genomics. Remarkably, the ∼50 Mb H. wernickii genome contains 15,974 genes of which 95% (7608) are duplicates formed by a recent whole genome duplication (WGD), with an average of 5% protein sequence divergence between them. We found that the WGD is extraordinarily recent, and compared to Saccharomyces cerevisiae, the majority of the genome’s ohnologs have not diverged at the level of gene expression of chromatin structure. Genetics Society of America 2017-05-12 /pmc/articles/PMC5499112/ /pubmed/28500048 http://dx.doi.org/10.1534/g3.117.040691 Text en Copyright © 2017 Sinha et al.
spellingShingle Genome Report
Sinha, Sunita
Flibotte, Stephane
Neira, Mauricio
Formby, Sean
Plemenitaš, Ana
Cimerman, Nina Gunde
Lenassi, Metka
Gostinčar, Cene
Stajich, Jason E.
Nislow, Corey
Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title_full Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title_fullStr Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title_full_unstemmed Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title_short Insight into the Recent Genome Duplication of the Halophilic Yeast Hortaea werneckii: Combining an Improved Genome with Gene Expression and Chromatin Structure
title_sort insight into the recent genome duplication of the halophilic yeast hortaea werneckii: combining an improved genome with gene expression and chromatin structure
topic Genome Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5499112/
https://www.ncbi.nlm.nih.gov/pubmed/28500048
http://dx.doi.org/10.1534/g3.117.040691
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