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Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms

Pichia kluyveri strain APC 11.10 B was isolated from apple bark in Switzerland and exhibited strong antagonistic activity against plant pathogenic fungi in vitro (e.g., Botrytis, Fusarium or Monilinia isolates). In order to identify the mechanisms underlying this antagonism, we have sequenced the ge...

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Autores principales: Nägeli, Lukas, Schuler, Martin, Segessemann, Tina, Frei, Daniel, Frey, Jürg E., Wolfe, Kenneth H., Ahrens, Christian H., Freimoser, Florian M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10365976/
https://www.ncbi.nlm.nih.gov/pubmed/37496519
http://dx.doi.org/10.1016/j.dib.2023.109394
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author Nägeli, Lukas
Schuler, Martin
Segessemann, Tina
Frei, Daniel
Frey, Jürg E.
Wolfe, Kenneth H.
Ahrens, Christian H.
Freimoser, Florian M.
author_facet Nägeli, Lukas
Schuler, Martin
Segessemann, Tina
Frei, Daniel
Frey, Jürg E.
Wolfe, Kenneth H.
Ahrens, Christian H.
Freimoser, Florian M.
author_sort Nägeli, Lukas
collection PubMed
description Pichia kluyveri strain APC 11.10 B was isolated from apple bark in Switzerland and exhibited strong antagonistic activity against plant pathogenic fungi in vitro (e.g., Botrytis, Fusarium or Monilinia isolates). In order to identify the mechanisms underlying this antagonism, we have sequenced the genome of this isolate by long- and short-read sequencing technologies. The sequence data were de novo assembled into nine scaffolds and a fully resolved circularized mitogenome. The total genome size was 10.9 Mbp and 7451 potential open reading frames (ORFs) and 202 tRNA genes were predicted. In comparison to two P. kluyveri genomes deposited at the NCBI (of strains X31-10 and CBA6002), the APC 11.10 B strain seemed to represent a hybrid because backmapping of sequencing reads resulted in a high rate of heterozygous and structural variants in the nuclear genome (this was not observed for the mitochondrial genome). The P. kluyveri (APC 11.10 B) draft genome represents a first step and resource for genome mining, comparative and functional genomics (e.g., identifying the biocontrol mode of action), and evolutionary studies. Since the genus Pichia comprises many biotechnologically relevant yeasts, the genome data may be used in a variety of fields and disciplines.
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spelling pubmed-103659762023-07-26 Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms Nägeli, Lukas Schuler, Martin Segessemann, Tina Frei, Daniel Frey, Jürg E. Wolfe, Kenneth H. Ahrens, Christian H. Freimoser, Florian M. Data Brief Data Article Pichia kluyveri strain APC 11.10 B was isolated from apple bark in Switzerland and exhibited strong antagonistic activity against plant pathogenic fungi in vitro (e.g., Botrytis, Fusarium or Monilinia isolates). In order to identify the mechanisms underlying this antagonism, we have sequenced the genome of this isolate by long- and short-read sequencing technologies. The sequence data were de novo assembled into nine scaffolds and a fully resolved circularized mitogenome. The total genome size was 10.9 Mbp and 7451 potential open reading frames (ORFs) and 202 tRNA genes were predicted. In comparison to two P. kluyveri genomes deposited at the NCBI (of strains X31-10 and CBA6002), the APC 11.10 B strain seemed to represent a hybrid because backmapping of sequencing reads resulted in a high rate of heterozygous and structural variants in the nuclear genome (this was not observed for the mitochondrial genome). The P. kluyveri (APC 11.10 B) draft genome represents a first step and resource for genome mining, comparative and functional genomics (e.g., identifying the biocontrol mode of action), and evolutionary studies. Since the genus Pichia comprises many biotechnologically relevant yeasts, the genome data may be used in a variety of fields and disciplines. Elsevier 2023-07-09 /pmc/articles/PMC10365976/ /pubmed/37496519 http://dx.doi.org/10.1016/j.dib.2023.109394 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Data Article
Nägeli, Lukas
Schuler, Martin
Segessemann, Tina
Frei, Daniel
Frey, Jürg E.
Wolfe, Kenneth H.
Ahrens, Christian H.
Freimoser, Florian M.
Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title_full Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title_fullStr Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title_full_unstemmed Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title_short Genome sequence data of the strongly antagonistic yeast Pichia kluyveri isolate APC 11.10 B as a foundation for analysing biocontrol mechanisms
title_sort genome sequence data of the strongly antagonistic yeast pichia kluyveri isolate apc 11.10 b as a foundation for analysing biocontrol mechanisms
topic Data Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10365976/
https://www.ncbi.nlm.nih.gov/pubmed/37496519
http://dx.doi.org/10.1016/j.dib.2023.109394
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