Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia

Abstract Background Aspergillus fumigatus is a human fungal pathogen that causes aspergillosis in immunocompromised hosts. A. fumigatus is believed to be exposed to diverse environmental stresses in the host cells. The adaptation mechanisms are critical for infections in human bodies. Transcriptiona...

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Main Authors: Hiroki Takahashi, Yoko Kusuya, Daisuke Hagiwara, Azusa Takahashi-Nakaguchi, Kanae Sakai, Tohru Gonoi
Format: Article
Language:English
Published: BMC 2017-12-01
Series:BMC Genomics
Subjects:
ESR
Online Access:http://link.springer.com/article/10.1186/s12864-017-4316-z
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spelling doaj-ee787804f463456dbd0f96232757c10b2020-11-25T02:44:49ZengBMCBMC Genomics1471-21642017-12-0118111510.1186/s12864-017-4316-zGlobal gene expression reveals stress-responsive genes in Aspergillus fumigatus myceliaHiroki Takahashi0Yoko Kusuya1Daisuke Hagiwara2Azusa Takahashi-Nakaguchi3Kanae Sakai4Tohru Gonoi5Medical Mycology Research Center, Chiba UniversityMedical Mycology Research Center, Chiba UniversityMedical Mycology Research Center, Chiba UniversityMedical Mycology Research Center, Chiba UniversityMedical Mycology Research Center, Chiba UniversityMedical Mycology Research Center, Chiba UniversityAbstract Background Aspergillus fumigatus is a human fungal pathogen that causes aspergillosis in immunocompromised hosts. A. fumigatus is believed to be exposed to diverse environmental stresses in the host cells. The adaptation mechanisms are critical for infections in human bodies. Transcriptional networks in response to diverse environmental challenges remain to be elucidated. To gain insights into the adaptation to environmental stresses in A. fumigatus mycelia, we conducted time series transcriptome analyses. Results With the aid of RNA-seq, we explored the global gene expression profiles of mycelia in A. fumigatus upon exposure to diverse environmental changes, including heat, superoxide, and osmotic stresses. From the perspective of global transcriptomes, transient responses to superoxide and osmotic stresses were observed while responses to heat stresses were gradual. We identified the stress-responsive genes for particular stresses, and the 266 genes whose expression levels drastically fluctuated upon exposure to all tested stresses. Among these, the 77 environmental stress response genes are conserved in S. cerevisiae, suggesting that these genes might be more general prerequisites for adaptation to environmental stresses. Finally, we revealed the strong correlations among expression profiles of genes related to ‘rRNA processing’. Conclusions The time series transcriptome analysis revealed the stress-responsive genes underlying the adaptation mechanisms in A. fumigatus mycelia. These results will shed light on the regulatory networks underpinning the adaptation of the filamentous fungi.http://link.springer.com/article/10.1186/s12864-017-4316-zTranscriptomeRNA-seqAspergillus fumigatusEnvironmental stressESR
collection DOAJ
language English
format Article
sources DOAJ
author Hiroki Takahashi
Yoko Kusuya
Daisuke Hagiwara
Azusa Takahashi-Nakaguchi
Kanae Sakai
Tohru Gonoi
spellingShingle Hiroki Takahashi
Yoko Kusuya
Daisuke Hagiwara
Azusa Takahashi-Nakaguchi
Kanae Sakai
Tohru Gonoi
Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
BMC Genomics
Transcriptome
RNA-seq
Aspergillus fumigatus
Environmental stress
ESR
author_facet Hiroki Takahashi
Yoko Kusuya
Daisuke Hagiwara
Azusa Takahashi-Nakaguchi
Kanae Sakai
Tohru Gonoi
author_sort Hiroki Takahashi
title Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
title_short Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
title_full Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
title_fullStr Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
title_full_unstemmed Global gene expression reveals stress-responsive genes in Aspergillus fumigatus mycelia
title_sort global gene expression reveals stress-responsive genes in aspergillus fumigatus mycelia
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2017-12-01
description Abstract Background Aspergillus fumigatus is a human fungal pathogen that causes aspergillosis in immunocompromised hosts. A. fumigatus is believed to be exposed to diverse environmental stresses in the host cells. The adaptation mechanisms are critical for infections in human bodies. Transcriptional networks in response to diverse environmental challenges remain to be elucidated. To gain insights into the adaptation to environmental stresses in A. fumigatus mycelia, we conducted time series transcriptome analyses. Results With the aid of RNA-seq, we explored the global gene expression profiles of mycelia in A. fumigatus upon exposure to diverse environmental changes, including heat, superoxide, and osmotic stresses. From the perspective of global transcriptomes, transient responses to superoxide and osmotic stresses were observed while responses to heat stresses were gradual. We identified the stress-responsive genes for particular stresses, and the 266 genes whose expression levels drastically fluctuated upon exposure to all tested stresses. Among these, the 77 environmental stress response genes are conserved in S. cerevisiae, suggesting that these genes might be more general prerequisites for adaptation to environmental stresses. Finally, we revealed the strong correlations among expression profiles of genes related to ‘rRNA processing’. Conclusions The time series transcriptome analysis revealed the stress-responsive genes underlying the adaptation mechanisms in A. fumigatus mycelia. These results will shed light on the regulatory networks underpinning the adaptation of the filamentous fungi.
topic Transcriptome
RNA-seq
Aspergillus fumigatus
Environmental stress
ESR
url http://link.springer.com/article/10.1186/s12864-017-4316-z
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AT yokokusuya globalgeneexpressionrevealsstressresponsivegenesinaspergillusfumigatusmycelia
AT daisukehagiwara globalgeneexpressionrevealsstressresponsivegenesinaspergillusfumigatusmycelia
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