Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...

Cladosporium phlei , which causes purple eyespot disease, has been focused on as a source of phleichrome from the perylenequinone group of pigments. Although this agent is important in photodynamic therapy, there are no genome sequences for the species. Here, we sequenced the genome of C. phlei and...

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Main Authors: Yu-Na Kang, Kum-Kang So, Do-Wan Kim, Dae-Hyuk Kim, Lee, Tae-Ho
Format: Article in Journal/Newspaper
Language:unknown
Published: Figshare 2019
Subjects:
Online Access:https://dx.doi.org/10.25384/sage.c.4417802
https://sage.figshare.com/collections/Draft_Genome_Sequencing_of_the_Pathogenic_Fungus_i_Cladosporium_phlei_i_ATCC_36193_Identifies_Candidates_of_Novel_Polyketide_Synthase_Genes_Involved_in_Perylenequinone-Group_Pigment_Production/4417802
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author Yu-Na Kang
Kum-Kang So
Do-Wan Kim
Dae-Hyuk Kim
Lee, Tae-Ho
author_facet Yu-Na Kang
Kum-Kang So
Do-Wan Kim
Dae-Hyuk Kim
Lee, Tae-Ho
author_sort Yu-Na Kang
collection DataCite
description Cladosporium phlei , which causes purple eyespot disease, has been focused on as a source of phleichrome from the perylenequinone group of pigments. Although this agent is important in photodynamic therapy, there are no genome sequences for the species. Here, we sequenced the genome of C. phlei and reported the draft sequence. The total length of the draft genome was approximately 31.8 Mb, and 9571 genes were predicted. Phylogenetic analysis showed that Cladosporium sphaerospermum, Rachicladosporium sp., and Rachicladosporium antarcticum were closely related, and this result corresponded to the taxonomic data. In addition to the draft genome sequence, we report four candidates of new polyketide synthase (PKS) genes, involved in the production of perylenequinone-group pigments. ...
format Article in Journal/Newspaper
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op_doi https://doi.org/10.25384/sage.c.441780210.1177/1176934319831306
op_relation https://dx.doi.org/10.1177/1176934319831306
op_rights CC BY 4.0
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spelling ftdatacite:10.25384/sage.c.4417802 2025-01-16T19:42:07+00:00 Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ... Yu-Na Kang Kum-Kang So Do-Wan Kim Dae-Hyuk Kim Lee, Tae-Ho 2019 https://dx.doi.org/10.25384/sage.c.4417802 https://sage.figshare.com/collections/Draft_Genome_Sequencing_of_the_Pathogenic_Fungus_i_Cladosporium_phlei_i_ATCC_36193_Identifies_Candidates_of_Novel_Polyketide_Synthase_Genes_Involved_in_Perylenequinone-Group_Pigment_Production/4417802 unknown Figshare https://dx.doi.org/10.1177/1176934319831306 CC BY 4.0 https://creativecommons.org/licenses/by/4.0 Cell Biology Collection article 2019 ftdatacite https://doi.org/10.25384/sage.c.441780210.1177/1176934319831306 2024-09-02T09:56:49Z Cladosporium phlei , which causes purple eyespot disease, has been focused on as a source of phleichrome from the perylenequinone group of pigments. Although this agent is important in photodynamic therapy, there are no genome sequences for the species. Here, we sequenced the genome of C. phlei and reported the draft sequence. The total length of the draft genome was approximately 31.8 Mb, and 9571 genes were predicted. Phylogenetic analysis showed that Cladosporium sphaerospermum, Rachicladosporium sp., and Rachicladosporium antarcticum were closely related, and this result corresponded to the taxonomic data. In addition to the draft genome sequence, we report four candidates of new polyketide synthase (PKS) genes, involved in the production of perylenequinone-group pigments. ... Article in Journal/Newspaper Antarc* DataCite
spellingShingle Cell Biology
Yu-Na Kang
Kum-Kang So
Do-Wan Kim
Dae-Hyuk Kim
Lee, Tae-Ho
Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title_full Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title_fullStr Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title_full_unstemmed Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title_short Draft Genome Sequencing of the Pathogenic Fungus Cladosporium phlei ATCC 36193 Identifies Candidates of Novel Polyketide Synthase Genes Involved in Perylenequinone-Group Pigment Production ...
title_sort draft genome sequencing of the pathogenic fungus cladosporium phlei atcc 36193 identifies candidates of novel polyketide synthase genes involved in perylenequinone-group pigment production ...
topic Cell Biology
topic_facet Cell Biology
url https://dx.doi.org/10.25384/sage.c.4417802
https://sage.figshare.com/collections/Draft_Genome_Sequencing_of_the_Pathogenic_Fungus_i_Cladosporium_phlei_i_ATCC_36193_Identifies_Candidates_of_Novel_Polyketide_Synthase_Genes_Involved_in_Perylenequinone-Group_Pigment_Production/4417802