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Mycology

A Novel Regulatory Gene, Tri10, Controls Trichothecene Toxin Production and Gene Expression

Andrew G. Tag, Gulnara F. Garifullina, Andrew W. Peplow, Charles Ake Jr., T. D. Phillips, Thomas M. Hohn, Marian N. Beremand
Andrew G. Tag
Department of Plant Pathology and Microbiology and
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Gulnara F. Garifullina
Department of Plant Pathology and Microbiology and
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Andrew W. Peplow
Department of Plant Pathology and Microbiology and
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Charles Ake Jr.
Department of Veterinary Anatomy and Public Health, Texas A&M University, College Station, Texas 77843, and
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T. D. Phillips
Department of Veterinary Anatomy and Public Health, Texas A&M University, College Station, Texas 77843, and
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Thomas M. Hohn
Syngenta, Research Triangle Park, North Carolina 27709
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Marian N. Beremand
Department of Plant Pathology and Microbiology and
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DOI: 10.1128/AEM.67.11.5294-5302.2001
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ABSTRACT

We report here the characterization of Tri10, a novel regulatory gene within the trichothecene gene cluster. Comparison of Tri10 genomic and mRNA sequences revealed that removal of a single 77-bp intron provided a 1,260-bp open reading frame, encoding a 420-amino-acid protein. Disruption ofTri10 in Fusarium sporotrichioidesabolished T-2 toxin production and dramatically decreased the transcript accumulation for four trichothecene genes (Tri4, Tri5, Tri6, and Tri101) and an apparent farnesyl pyrophosphate synthetase (Fpps) gene. Conversely, homologous integration of a disruption vector by a single upstream crossover event significantly increased T-2 toxin production and elevated the transcript accumulation of the trichothecene genes andFpps. Further analysis revealed that disruption ofTri10, and to a greater extent the disruption ofTri6, increased sensitivity to T-2 toxin under certain growth conditions. Although Tri10 is conserved inFusarium graminearum and Fusarium sambucinum and clearly plays a central role in regulating trichothecene gene expression, it does not show any significant matches to proteins of known or predicted function or to motifs except a single transmembrane domain. We suggest a model in which Tri10acts upstream of the cluster-encoded transcription factor TRI6 and is necessary for full expression of both the other trichothecene genes and the genes for the primary metabolic pathway that precedes the trichothecene biosynthetic pathway, as well as for wild-type levels of trichothecene self-protection. We further suggest the presence of a regulatory loop where Tri6 is not required for the transcription of Tri10 but is required to limit the expression of Tri10.

  • Copyright © 2001 American Society for Microbiology
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A Novel Regulatory Gene, Tri10, Controls Trichothecene Toxin Production and Gene Expression
Andrew G. Tag, Gulnara F. Garifullina, Andrew W. Peplow, Charles Ake Jr., T. D. Phillips, Thomas M. Hohn, Marian N. Beremand
Applied and Environmental Microbiology Nov 2001, 67 (11) 5294-5302; DOI: 10.1128/AEM.67.11.5294-5302.2001

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A Novel Regulatory Gene, Tri10, Controls Trichothecene Toxin Production and Gene Expression
Andrew G. Tag, Gulnara F. Garifullina, Andrew W. Peplow, Charles Ake Jr., T. D. Phillips, Thomas M. Hohn, Marian N. Beremand
Applied and Environmental Microbiology Nov 2001, 67 (11) 5294-5302; DOI: 10.1128/AEM.67.11.5294-5302.2001
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KEYWORDS

Fungal Proteins
Fusarium
Gene Expression Regulation, Fungal
Genes, Regulator
Trichothecenes

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