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Original Articles

Some Nutritional Factors Affecting Production of Biomass and Antifungal Metabolites of Coniothyrium minitans

Pages 443-454 | Published online: 28 Jun 2010

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Jin-Yu Yang, Kuang-Ren Chung & Jenn-Wen Huang. (2020) A combined effect of Bacillus sp., tobacco extracts and plant oils on the control of cruciferous vegetable anthracnose. Archives of Phytopathology and Plant Protection 53:1-2, pages 48-69.
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Nicola Tomprefa, Robert Hill, John Whipps & Mark McQuilken. (2011) Some environmental factors affect growth and antibiotic production by the mycoparasite Coniothyrium minitans . Biocontrol Science and Technology 21:6, pages 721-731.
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L. Kiss, J.C. Russell, O. Szentiványi, X. Xu & P. Jeffries. (2004) Biology and biocontrol potential of Ampelomyces mycoparasites, natural antagonists of powdery mildew fungi. Biocontrol Science and Technology 14:7, pages 635-651.
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Articles from other publishers (20)

Márk Z. Németh, Diána Seress & Teruo Nonomura. (2023) Fungi Parasitizing Powdery Mildew Fungi: Ampelomyces Strains as Biocontrol Agents against Powdery Mildews. Agronomy 13:8, pages 1991.
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Lidia Szwajkowska-Michałek, Kinga Stuper-Szablewska, Michał Krzyżaniak & Piotr Łakomy. (2022) A Bioactive Compounds Profile Present in the Selected Wood Rot. Forests 13:8, pages 1242.
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Matěj Pánek, Aleš Hanáček, Jana Wenzlová, Marie Maňasová & Miloslav Zouhar. (2021) A Comparison of the Ability of Some Commercially Produced Biological Control Agents to Protect Strawberry Plants against the Plant Pathogen Phytophthora cactorum. Agriculture 11:11, pages 1086.
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Huizhang Zhao, Ting Zhou, Jiatao Xie, Jiasen Cheng, Tao Chen, Daohong Jiang & Yanping Fu. (2020) Mycoparasitism illuminated by genome and transcriptome sequencing of Coniothyrium minitans, an important biocontrol fungus of the plant pathogen Sclerotinia sclerotiorum. Microbial Genomics 6:3.
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Huizhang Zhao, Ting Zhou, Jiatao Xie, Jiasen Cheng, Daohong Jiang & Yanping Fu. (2020) Host Transcriptional Response of Sclerotinia sclerotiorum Induced by the Mycoparasite Coniothyrium minitans. Frontiers in Microbiology 11.
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Xiping Sun, Ying Zhao, Jichun Jia, Jiatao Xie, Jiasen Cheng, Huiquan Liu, Daohong Jiang & Yanping Fu. (2017) Uninterrupted Expression of CmSIT1 in a Sclerotial Parasite Coniothyrium minitans Leads to Reduced Growth and Enhanced Antifungal Ability. Frontiers in Microbiology 8.
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Yi Lou, Yongchao Han, Long Yang, Mingde Wu, Jing Zhang, Jiasen Cheng, Moying Wang, Daohong Jiang, Weidong Chen & Guoqing Li. (2015) CmpacC regulates mycoparasitism, oxalate degradation and antifungal activity in the mycoparasitic fungus C oniothyrium minitans . Environmental Microbiology 17:11, pages 4711-4729.
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Li-Mei Zeng, Jing Zhang, Yong-Chao Han, Long Yang, Ming-de Wu, Dao-Hong Jiang, Weidong Chen & Guo-Qing Li. (2014) Degradation of oxalic acid by the mycoparasite Coniothyrium minitans plays an important role in interacting with Sclerotinia sclerotiorum . Environmental Microbiology 16:8, pages 2591-2610.
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Eric Pereira, Ana Santos, Francisca Reis, Rui M. Tavares, Paula Baptista, Teresa Lino-Neto & Cristina Almeida-Aguiar. (2013) A new effective assay to detect antimicrobial activity of filamentous fungi. Microbiological Research 168:1, pages 1-5.
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Yong-Chao Han, Guo-Qing Li, Long Yang & Dao-Hong Jiang. (2010) Molecular cloning, characterization and expression analysis of a pacC homolog in the mycoparasite Coniothyrium minitans. World Journal of Microbiology and Biotechnology 27:2, pages 381-391.
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N. Tomprefa, M.P. McQuilken, R.A. Hill & J.M. Whipps. (2009) Antimicrobial activity of Coniothyrium minitans and its macrolide antibiotic macrosphelide A . Journal of Applied Microbiology 106:6, pages 2048-2056.
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Junling Shi, Yin Li, Yi Zheng, Yi Zhu, Xiaoping Zhang, Guocheng Du & Jian Chen. (2007) Tryptophan supplementation and pH adjustment for optimizing the sporulation of Coniothyrium minitans. Biotechnology Letters 30:2, pages 259-262.
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Rui Yang, Yongchao Han, Guoqing Li, Daohong Jiang & Hung-Chang Huang. (2008) Effects of ambient pH and nutritional factors on antifungal activity of the mycoparasite Coniothyrium minitans. Biological Control 44:1, pages 116-127.
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Levente Kiss. 2008. Stress in Yeast and Filamentous Fungi. Stress in Yeast and Filamentous Fungi 37 52 .
Rui Yang, Yong Chao Han, Guo Qing Li, Dao Hong Jiang & Hung Chang Huang. (2007) Suppression of Sclerotinia sclerotiorum by antifungal substances produced by the mycoparasite Coniothyrium minitans. European Journal of Plant Pathology 119:4, pages 411-420.
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Hung-Chang Huang & R. Scott Erickson. (2007) Use of sclerotia ofSclerotinia sclerotiorum for efficient production of conidia ofConiothyrium minitans in liquid culture. Phytoparasitica 35:2, pages 140-145.
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John M. Whipps, Amanda Bennett, Mike Challen, John Clarkson, Emma Coventry, S. Muthumeenakshi, Ralph Noble, Chris Rogers, S. Sreenivasaprasad & E. Eirian Jones. 2007. Novel Biotechnologies for Biocontrol Agent Enhancement and Management. Novel Biotechnologies for Biocontrol Agent Enhancement and Management 223 241 .
Jiasen Cheng, Daohong Jiang, Xianhong Yi, Yanping Fu, Guoqing Li & John M Whipps. (2003) Production, survival and efficacy of Coniothyrium minitans conidia produced in shaken liquid culture . FEMS Microbiology Letters 227:1, pages 127-131.
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G.Q. Li, H.C. Huang & S.N. Acharya. (2003) Antagonism and biocontrol potential of Ulocladium atrum on Sclerotinia sclerotiorum. Biological Control 28:1, pages 11-18.
Crossref
Mark P McQuilken, Jacqueline Gemmell, Robert A Hill & John M Whipps. (2003) Production of macrosphelide A by the mycoparasite Coniothyrium minitans . FEMS Microbiology Letters 219:1, pages 27-31.
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