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The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest
BACKGROUND: The industrially important yeast Blastobotrys (Arxula) adeninivorans is an asexual hemiascomycete phylogenetically very distant from Saccharomyces cerevisiae. Its unusual metabolic flexibility allows it to use a wide range of carbon and nitrogen sources, while being thermotolerant, xerot...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022394/ https://www.ncbi.nlm.nih.gov/pubmed/24834124 http://dx.doi.org/10.1186/1754-6834-7-66 |
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author | Kunze, Gotthard Gaillardin, Claude Czernicka, Małgorzata Durrens, Pascal Martin, Tiphaine Böer, Erik Gabaldón, Toni Cruz, Jose A Talla, Emmanuel Marck, Christian Goffeau, André Barbe, Valérie Baret, Philippe Baronian, Keith Beier, Sebastian Bleykasten, Claudine Bode, Rüdiger Casaregola, Serge Despons, Laurence Fairhead, Cécile Giersberg, Martin Gierski, Przemysław Piotr Hähnel, Urs Hartmann, Anja Jankowska, Dagmara Jubin, Claire Jung, Paul Lafontaine, Ingrid Leh-Louis, Véronique Lemaire, Marc Marcet-Houben, Marina Mascher, Martin Morel, Guillaume Richard, Guy-Franck Riechen, Jan Sacerdot, Christine Sarkar, Anasua Savel, Guilhem Schacherer, Joseph Sherman, David J Stein, Nils Straub, Marie-Laure Thierry, Agnès Trautwein-Schult, Anke Vacherie, Benoit Westhof, Eric Worch, Sebastian Dujon, Bernard Souciet, Jean-Luc Wincker, Patrick Scholz, Uwe Neuvéglise, Cécile |
author_facet | Kunze, Gotthard Gaillardin, Claude Czernicka, Małgorzata Durrens, Pascal Martin, Tiphaine Böer, Erik Gabaldón, Toni Cruz, Jose A Talla, Emmanuel Marck, Christian Goffeau, André Barbe, Valérie Baret, Philippe Baronian, Keith Beier, Sebastian Bleykasten, Claudine Bode, Rüdiger Casaregola, Serge Despons, Laurence Fairhead, Cécile Giersberg, Martin Gierski, Przemysław Piotr Hähnel, Urs Hartmann, Anja Jankowska, Dagmara Jubin, Claire Jung, Paul Lafontaine, Ingrid Leh-Louis, Véronique Lemaire, Marc Marcet-Houben, Marina Mascher, Martin Morel, Guillaume Richard, Guy-Franck Riechen, Jan Sacerdot, Christine Sarkar, Anasua Savel, Guilhem Schacherer, Joseph Sherman, David J Stein, Nils Straub, Marie-Laure Thierry, Agnès Trautwein-Schult, Anke Vacherie, Benoit Westhof, Eric Worch, Sebastian Dujon, Bernard Souciet, Jean-Luc Wincker, Patrick Scholz, Uwe Neuvéglise, Cécile |
author_sort | Kunze, Gotthard |
collection | PubMed |
description | BACKGROUND: The industrially important yeast Blastobotrys (Arxula) adeninivorans is an asexual hemiascomycete phylogenetically very distant from Saccharomyces cerevisiae. Its unusual metabolic flexibility allows it to use a wide range of carbon and nitrogen sources, while being thermotolerant, xerotolerant and osmotolerant. RESULTS: The sequencing of strain LS3 revealed that the nuclear genome of A. adeninivorans is 11.8 Mb long and consists of four chromosomes with regional centromeres. Its closest sequenced relative is Yarrowia lipolytica, although mean conservation of orthologs is low. With 914 introns within 6116 genes, A. adeninivorans is one of the most intron-rich hemiascomycetes sequenced to date. Several large species-specific families appear to result from multiple rounds of segmental duplications of tandem gene arrays, a novel mechanism not yet described in yeasts. An analysis of the genome and its transcriptome revealed enzymes with biotechnological potential, such as two extracellular tannases (Atan1p and Atan2p) of the tannic-acid catabolic route, and a new pathway for the assimilation of n-butanol via butyric aldehyde and butyric acid. CONCLUSIONS: The high-quality genome of this species that diverged early in Saccharomycotina will allow further fundamental studies on comparative genomics, evolution and phylogenetics. Protein components of different pathways for carbon and nitrogen source utilization were identified, which so far has remained unexplored in yeast, offering clues for further biotechnological developments. In the course of identifying alternative microorganisms for biotechnological interest, A. adeninivorans has already proved its strengthened competitiveness as a promising cell factory for many more applications. |
format | Online Article Text |
id | pubmed-4022394 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-40223942014-05-16 The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest Kunze, Gotthard Gaillardin, Claude Czernicka, Małgorzata Durrens, Pascal Martin, Tiphaine Böer, Erik Gabaldón, Toni Cruz, Jose A Talla, Emmanuel Marck, Christian Goffeau, André Barbe, Valérie Baret, Philippe Baronian, Keith Beier, Sebastian Bleykasten, Claudine Bode, Rüdiger Casaregola, Serge Despons, Laurence Fairhead, Cécile Giersberg, Martin Gierski, Przemysław Piotr Hähnel, Urs Hartmann, Anja Jankowska, Dagmara Jubin, Claire Jung, Paul Lafontaine, Ingrid Leh-Louis, Véronique Lemaire, Marc Marcet-Houben, Marina Mascher, Martin Morel, Guillaume Richard, Guy-Franck Riechen, Jan Sacerdot, Christine Sarkar, Anasua Savel, Guilhem Schacherer, Joseph Sherman, David J Stein, Nils Straub, Marie-Laure Thierry, Agnès Trautwein-Schult, Anke Vacherie, Benoit Westhof, Eric Worch, Sebastian Dujon, Bernard Souciet, Jean-Luc Wincker, Patrick Scholz, Uwe Neuvéglise, Cécile Biotechnol Biofuels Research BACKGROUND: The industrially important yeast Blastobotrys (Arxula) adeninivorans is an asexual hemiascomycete phylogenetically very distant from Saccharomyces cerevisiae. Its unusual metabolic flexibility allows it to use a wide range of carbon and nitrogen sources, while being thermotolerant, xerotolerant and osmotolerant. RESULTS: The sequencing of strain LS3 revealed that the nuclear genome of A. adeninivorans is 11.8 Mb long and consists of four chromosomes with regional centromeres. Its closest sequenced relative is Yarrowia lipolytica, although mean conservation of orthologs is low. With 914 introns within 6116 genes, A. adeninivorans is one of the most intron-rich hemiascomycetes sequenced to date. Several large species-specific families appear to result from multiple rounds of segmental duplications of tandem gene arrays, a novel mechanism not yet described in yeasts. An analysis of the genome and its transcriptome revealed enzymes with biotechnological potential, such as two extracellular tannases (Atan1p and Atan2p) of the tannic-acid catabolic route, and a new pathway for the assimilation of n-butanol via butyric aldehyde and butyric acid. CONCLUSIONS: The high-quality genome of this species that diverged early in Saccharomycotina will allow further fundamental studies on comparative genomics, evolution and phylogenetics. Protein components of different pathways for carbon and nitrogen source utilization were identified, which so far has remained unexplored in yeast, offering clues for further biotechnological developments. In the course of identifying alternative microorganisms for biotechnological interest, A. adeninivorans has already proved its strengthened competitiveness as a promising cell factory for many more applications. BioMed Central 2014-04-24 /pmc/articles/PMC4022394/ /pubmed/24834124 http://dx.doi.org/10.1186/1754-6834-7-66 Text en Copyright © 2014 Kunze et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated. |
spellingShingle | Research Kunze, Gotthard Gaillardin, Claude Czernicka, Małgorzata Durrens, Pascal Martin, Tiphaine Böer, Erik Gabaldón, Toni Cruz, Jose A Talla, Emmanuel Marck, Christian Goffeau, André Barbe, Valérie Baret, Philippe Baronian, Keith Beier, Sebastian Bleykasten, Claudine Bode, Rüdiger Casaregola, Serge Despons, Laurence Fairhead, Cécile Giersberg, Martin Gierski, Przemysław Piotr Hähnel, Urs Hartmann, Anja Jankowska, Dagmara Jubin, Claire Jung, Paul Lafontaine, Ingrid Leh-Louis, Véronique Lemaire, Marc Marcet-Houben, Marina Mascher, Martin Morel, Guillaume Richard, Guy-Franck Riechen, Jan Sacerdot, Christine Sarkar, Anasua Savel, Guilhem Schacherer, Joseph Sherman, David J Stein, Nils Straub, Marie-Laure Thierry, Agnès Trautwein-Schult, Anke Vacherie, Benoit Westhof, Eric Worch, Sebastian Dujon, Bernard Souciet, Jean-Luc Wincker, Patrick Scholz, Uwe Neuvéglise, Cécile The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title | The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title_full | The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title_fullStr | The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title_full_unstemmed | The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title_short | The complete genome of Blastobotrys (Arxula) adeninivorans LS3 - a yeast of biotechnological interest |
title_sort | complete genome of blastobotrys (arxula) adeninivorans ls3 - a yeast of biotechnological interest |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4022394/ https://www.ncbi.nlm.nih.gov/pubmed/24834124 http://dx.doi.org/10.1186/1754-6834-7-66 |
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