The role of three calcineurin subunits and a related transcription factor (Crz1) in conidiation, multistress tolerance and virulence in Beauveria bassiana

The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger...

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Published inApplied microbiology and biotechnology Vol. 99; no. 2; pp. 827 - 840
Main Authors Li, Fang, Wang, Zheng-Liang, Zhang, Long-Bin, Ying, Sheng-Hua, Feng, Ming-Guang
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 01.01.2015
Springer
Springer Nature B.V
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Abstract The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana . CN-mediated phosphatase activity decreased by 16–38 % in all deletion mutants compared with wild type. Growth and conidiation were most defective in Δ cnB , which showed a large proportion of abnormally branched germlings but were less defective in Δ cnA1 and Δ cnA2 . Conidiation defects also occurred in Δ crz1 , uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to Ca 2+ , Mn 2+ , Zn 2+ , Mg 2+ , two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only Δ cnB and Δ crz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and down-regulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress-responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
AbstractList The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana. CN-mediated phosphatase activity decreased by 16-38 % in all deletion mutants compared with wild type. Growth and conidiation were most defective in ΔcnB, which showed a large proportion of abnormally branched germlings but were less defective in ΔcnA1 and ΔcnA2. Conidiation defects also occurred in Δcrz1, uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to Ca(2+), Mn(2+), Zn(2+), Mg(2+), two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only ΔcnB and Δcrz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and down-regulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress-responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana. CN-mediated phosphatase activity decreased by 16-38% in all deletion mutants compared with wild type. Growth and conidiation were most defective in ΔcnB, which showed a large proportion of abnormally branched germlings but were less defective in ΔcnA1 and ΔcnA2. Conidiation defects also occurred in Δcrz1, uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to [Ca.sup.2+], [Mn.sup.2+], [Zn.sup.2+], [Mg.sup.2+], two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only ΔcnB and Δcrz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and downregulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana. CN-mediated phosphatase activity decreased by 16-38 % in all deletion mutants compared with wild type. Growth and conidiation were most defective in [Delta]cnB, which showed a large proportion of abnormally branched germlings but were less defective in [Delta]cnA1 and [Delta]cnA2. Conidiation defects also occurred in [Delta]crz1, uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to Ca^sup 2+^, Mn^sup 2+^, Zn^sup 2+^, Mg^sup 2+^, two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only [Delta]cnB and [Delta]crz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and down-regulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress-responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana. CN-mediated phosphatase activity decreased by 16-38% in all deletion mutants compared with wild type. Growth and conidiation were most defective in ΔcnB, which showed a large proportion of abnormally branched germlings but were less defective in ΔcnA1 and ΔcnA2. Conidiation defects also occurred in Δcrz1, uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to [Ca.sup.2+], [Mn.sup.2+], [Zn.sup.2+], [Mg.sup.2+], two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only ΔcnB and Δcrz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and downregulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection. Keywords Entomopathogenic fungi * Calcineurin pathway * Functional diversity * Asexual development * Stress response * Virulence
The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana. CN-mediated phosphatase activity decreased by 16-38 % in all deletion mutants compared with wild type. Growth and conidiation were most defective in Delta cnB, which showed a large proportion of abnormally branched germlings but were less defective in Delta cnA1 and Delta cnA2. Conidiation defects also occurred in Delta crz1, uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to Ca super(2+), Mn super(2+), Zn super(2+), Mg super(2+), two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only Delta cnB and Delta crz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and down-regulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress-responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally unexplored in entomopathogenic fungi. Here, we characterise three CN subunits (CnA1, CnA2 and CnB) and a downstream CN-responsive zinc finger transcription factor (Crz1) in Beauveria bassiana . CN-mediated phosphatase activity decreased by 16–38 % in all deletion mutants compared with wild type. Growth and conidiation were most defective in Δ cnB , which showed a large proportion of abnormally branched germlings but were less defective in Δ cnA1 and Δ cnA2 . Conidiation defects also occurred in Δ crz1 , uniquely accompanied with slower germination. Compared with wild type, the four deletion mutants became, to varying degrees, more sensitive to Ca 2+ , Mn 2+ , Zn 2+ , Mg 2+ , two oxidants, three cell wall stressors, carbendazim, heat shock and ultraviolet (UV)-B irradiation. They were also less virulent to Spodoptera litura larvae. Only Δ cnB and Δ crz1 were less tolerant to high osmolarity. The altered phenotypes of the deletion mutants were associated with lower intracellular mannitol and trehalose levels, reduced overall activity of superoxide dismutases and catalases, altered cell wall composition and down-regulation of numerous phenotype-influencing genes. Additionally, the transcription of six cascaded genes in two stress-responsive mitogen-activated protein kinase (MAPK) pathways and the phosphorylation of hallmarking Hog1 and Slt2 were largely down-regulated in all the deletion mutants under osmotic and cell wall stresses, respectively. All the changes were restored by gene complementation. Taken together, three calcineurin subunits and Crz1 play vital, but variable, roles in B. bassiana responses to environmental stresses during development and host signals during infection.
Audience Academic
Author Zhang, Long-Bin
Ying, Sheng-Hua
Feng, Ming-Guang
Li, Fang
Wang, Zheng-Liang
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  fullname: Wang, Zheng-Liang
  organization: Institute of Microbiology, College of Life Sciences, Zhejiang University, College of Life Sciences, China Jiliang University
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  surname: Ying
  fullname: Ying, Sheng-Hua
  organization: Institute of Microbiology, College of Life Sciences, Zhejiang University
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  givenname: Ming-Guang
  surname: Feng
  fullname: Feng, Ming-Guang
  email: mgfeng@zju.edu.cn
  organization: Institute of Microbiology, College of Life Sciences, Zhejiang University
BackLink https://www.ncbi.nlm.nih.gov/pubmed/25324131$$D View this record in MEDLINE/PubMed
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ISSN 0175-7598
IngestDate Fri Aug 16 08:48:21 EDT 2024
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IsPeerReviewed true
IsScholarly true
Issue 2
Keywords Calcineurin pathway
Asexual development
Entomopathogenic fungi
Stress response
Virulence
Functional diversity
Language English
LinkModel DirectLink
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content type line 23
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crossref_primary_10_1007_s00253_014_6124_6
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PublicationCentury 2000
PublicationDate 2015-01-01
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  year: 2015
  text: 2015-01-01
  day: 01
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PublicationPlace Berlin/Heidelberg
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PublicationTitle Applied microbiology and biotechnology
PublicationTitleAbbrev Appl Microbiol Biotechnol
PublicationTitleAlternate Appl Microbiol Biotechnol
PublicationYear 2015
Publisher Springer Berlin Heidelberg
Springer
Springer Nature B.V
Publisher_xml – name: Springer Berlin Heidelberg
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Snippet The eukaryotic calcineurin (CN) pathway comprising catalytic A (CnA) and regulatory B subunits (CnB) is crucial for many biological processes but functionally...
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StartPage 827
SubjectTerms Agricultural chemicals
Animals
Applied Genetics and Molecular Biotechnology
Ascomycota
Beauveria - genetics
Beauveria - pathogenicity
Beauveria - physiology
Beauveria bassiana
Biological Control Agents
Biomedical and Life Sciences
Biotechnology
Calcineurin
Calcineurin - chemistry
Calcineurin - genetics
Catalase - metabolism
Cell cycle
Cell Wall - metabolism
Cloning, Molecular
Down-Regulation
Environmental stress
Escherichia coli - genetics
Fungal Proteins - chemistry
Fungal Proteins - genetics
Fungi
Fungicides
Gene Deletion
Gene expression
Genes
Genetic aspects
Health aspects
Insecticides
Irradiation
Kinases
Larva
Larvae
Lethal Dose 50
Life Sciences
Microbial Genetics and Genomics
Microbiology
Morphology
Oxidizing agents
Phenotype
Phosphatase
Phosphorylation
Proteins
Spodoptera - microbiology
Spodoptera litura
Stress, Physiological
Studies
Superoxide Dismutase - metabolism
Transcription factors
Transcription Factors - chemistry
Transcription Factors - genetics
Virulence
Virulence (Microbiology)
Yeast
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Title The role of three calcineurin subunits and a related transcription factor (Crz1) in conidiation, multistress tolerance and virulence in Beauveria bassiana
URI https://link.springer.com/article/10.1007/s00253-014-6124-6
https://www.ncbi.nlm.nih.gov/pubmed/25324131
https://www.proquest.com/docview/1648231946/abstract/
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https://search.proquest.com/docview/1660430965
Volume 99
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