References
- 이상엽, 류재당, 김홍기. 2005. 중복기생균 Ampelomyces quisqualis 94013의 배양적 특성. 식물병연구 11: 173-178 https://doi.org/10.5423/RPD.2005.11.2.173
- 中澤靖彦, 大塚範夫. 1994. ウリ類うどんこ病菌. 植物防疫 48: 36-38
- 中澤靖彦. 1995. キュウリうどんこ病菌の藥劑 感受性. 今月の農業 4: 114-118
- Asari, S. Horie, H. and Nakazawa, Y. 1994. Current status in sensitivity of Sphaerothecafuliginea to DMI in Kanto-Tosan District, Japan. Proc. Kanto-Tosan Plant Protec. Soc. 41: 69-75
- Belanger, R. R., Dik, A. J. and Menzies, J. M. 1998. Powdery mildews recent Advances toward integrated control. Pp 89-126. In: Boland, G. J. and Kuykendall, D. L. Eds. Plant-microbe Interactions and Biological Control, Marcel dekker, New York, USA
- Belorger, B. R., Labbe, C. and Jarvis, W. R. 1994. Commercial scale control of rose powdery mildew with a fungal antagonist. Phytopathology 78: 420-424
- Braun, U. 1987. A Monograph of the Erysiphales (Powdery Mildews). Stuttgart, Borntraeger Publisher. 700p
- Clare, B, G. 1964. Ampelomyces quisqualis (Cicinnobolus cesatii) on Queensland Erysiphaceae. Univ. Queensland Papers, Dept. Bot. 4: 147-149
- Emmons, C. W. 1930. Cicinnobolus cesatii, a study in host parasite relationships. Bull. Torrey Bot. Club. 57: 421-441 https://doi.org/10.2307/2480445
- Erickson, E. O. and Wilcox, W. F. 1997. Distributions of sensitivities to three sterol demethylation inhibitor fungicides among populations of Uncinula necator sensitive and resistant to triadimefon. Phytopathology 87: 784-791 https://doi.org/10.1094/PHYTO.1997.87.8.784
- Hanlin, R. T. and Tortolero, O. 1984. Brasiliomyces, a new host for Ampelomyces. Mycotaxon 21: 459-462
- Hawksworth, D. L. 1981. A survey of the fungicolous conidial fungi. Pp 171-244. In: G. T. Cole and B. Kendrick. Eds. Biology of Conidial Fungi, vol. 1. Academic Press, London, UK
- Hijwegen, T. 1992a. Biological control of cucumber powdery mildew with Tilletiopsis minor under greenhouse conditions. Neth. J Plant Pathol. 98: 221-225 https://doi.org/10.1007/BF02000089
- Hijwegen, T. 1992b. Glycolytic activities in some fungicolous fungi. Neth. J. Plant Pathol. 98: 91-98
- Hijwegen, T. and Buchenauer, H. 1984. Isolation and identification of hyperparasitic fungi associated with Erysiphaceae. Neth. J. Plant Pathol. 90: 79-84 https://doi.org/10.1007/BF01999956
- Hofstein, R. 1996. Ampelomyces quisqulis, a new biofungicide to control powdery mildew in grapes. in Brighton Crop Protection Conference-Pests and Diseases, vol. 1: 34-40. British Crop Protection Council, Farnham, UK
- Kiss, L. 1997. Genetic diversity in Ampelomyces isolates, hyper-parasites of powdery midew fungi, inferred from RFLP analysis of the rRNA ITS region. Mycol. Res. 101: 1073-1080 https://doi.org/10.1017/S0953756297003705
- Kiss, L., Russell, J. C., Szentivanyi, O., Xu, X. and Jeffries, P. 2004. Biological and biocontrol potential of Ampelomyces mycoparasites, natural antagonist of powdery mildew fungi. Biocontrol Sci. Technol. 14: 635-651 https://doi.org/10.1080/09583150410001683600
- Kiss, L. and Vajna, L. 1994. New approaches in the study of the genus Ampelomyces. Abstracts of the 3rd EFPP Conference, Poznan, p83
- Kiss, L. and Vajna, L. 1995. New approaches in the study of the genus Ampelomyces, hyperparasites of powdery mildew fungi. Pp 301-304. In: Manka, M. Ed. Environmental biotic factors in integrated plant disease control. Polish Phytopathological Society, Poznan, Poland
- Klecan, A. L., Hippe, S. and Somentlle, S. C. 1990. Reduced growth of Erysiphe graminis f. sp. hordei indiced by Tilletiopsis pallescens. Ecol. Epidemiol. 80: 325-331
- Koji Amano. 1986. Host range and geographical distribution of the powdery mildew. Japan societies press, Tokyo, Japan
- Korean Society of Plant Pathology. 2004. List of Plant Diseases in Korea. 4rd. ed. JungHangSa, Korea
- Kumar, S., Tamura, K. and Nei, M. 2004. MEGA3: Integrated software for Molecular Evolutionary Genetics Analysis and sequence alignment. Brief Bioinform. 5: 150-163 https://doi.org/10.1093/bib/5.2.150
- Lee, B. H. 1976. Mycoparasitic fungi in Korea. part 1. Mycoparasitic fungi on the pathogen of powdery mildew. Bull. Appl. Nat. Sci. (Konkuk Univ.) 2: 7-11
- Lyr, H., Russell, P. E. and Sisler, H. R. 1996. Modem fungicides and antifungal compounds. Intercept Limited, Andover, UK
- Menzies, J. G., Ehret, D. L., Glass, A. D. M., Helmer, T., Koch, C. and Seywerd, F. 1991. Effects of soluble silicon on the parasitic fitness of Sphaerotheca fuliginea on Cucumis sativus. Phytopathology 81: 84-88 https://doi.org/10.1094/Phyto-81-84
- Nelson, M. D. and Gubler, W. D. 1995. Evaluation of biological and chemical agents for control of strawberry powdery mildew, Sphaerotheca macularis f. sp. fragariae. Phytopathology 85: 1041 (Abstr.)
- Pasini, C., D'quila, F., Curir, P. and Gullino, M. L. 1997. Effectiveness of antifungal compounds against rose powdery mildew (Sphaertheca pannosa var. rosae) in glasshouses. Crop Protection 16: 251-256 https://doi.org/10.1016/S0261-2194(96)00095-6
- Philipp, W. D. and Cruger, G. 1979. Parasitismus von Ampelomyces quisqualis auf Echten Mehltaupilzen an Gurten und anderen Gemusearten. Z. PjIanzenkrankh. Pjlanzensch. 86: 129-142
- Rudakof, O. L. 1979. Fungi of the genus Ampelomyces Ces. Es Schlecht. In Russian, Mikol. Fitopatol. 13: 104-110
- Shin, H. D. and Kim, K. H. 1994. Isolation of hyperparasitic fungi to powdery mildews and selection of superior isolates for biocontrol of cucumber powdery mildew. RDA J. Agr. Sci. 36: 141-151
- Shin, H. D. 1994b. Powdery mildew fungi and their host plants from kangwon province. Kor. J. Mycol. 22: 229-246
- Spencer, D. M. 1978. The Powdery Mildew. London. Academic Press
- Sullivan, R. F. and White, J. F. 2000. Phoma glomerata as a mycoparasite of powdery mildew. Appl. Environ. Microbiol. 66: 425-427 https://doi.org/10.1128/AEM.66.1.425-427.2000
- Sundheim, L. and Krekling, T. 1982. Host-parasite relationships of the hyperparasite Ampelomyces quisqualis and its powdery mildew host Sphaerotheca fuliginea. Z. Phytopathol. 104: 202-208 https://doi.org/10.1111/j.1439-0434.1982.tb00527.x
- Sutton, B. C. 1980. The Coelomycetes. CMI Kew, Surrey, England
- Sztejnberg, A., Galper, S., Mazar S. and Lisker, N. 1989. Ampelomyces quisqualis for biological and integrated control of powdery mildews in Israel. J. Phytopath. 124: 285-295 https://doi.org/10.1111/j.1439-0434.1989.tb04925.x
- Szentivanyi, O., Kiss, L., Russell, J. C., Kovacs, G. M., Varga, K., Jankovics, T., Lesemann , S., Xu, X.-M. and Jeffries, P. 2005. Ampelomyces mycoparasites from apple powdery mildew identified as a distinct group based on single-stranded conformation polymorphism analysis of the rDNA ITS region. Mycol. Res. 109: 429-438 https://doi.org/10.1017/S0953756204001820
- Thompson, J. D., Higgins, D. G. and Gibson, T. J. 1994. CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucl. Acids Res. 22: 4673-4680 https://doi.org/10.1093/nar/22.22.4673
- Urquhart, E. J., Menzies, J. G. and Punja, Z. K. 1994. Growth and biological control activity of Tilletiopsis species against powdery mildew (Sphaertheca fuliginea) on greenhouse cucumber. Phytopathology 84: 341-351 https://doi.org/10.1094/Phyto-84-341
- hite, T. J., Bruns, T. D., Lee, S. and Taylor, J, W. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. Pp 315-322. In: Innis, M. A., Gelfand, D. H., Sninsky, J. J. and White, T. J. Eds. PCR Protocols: A guide to methods and applications. Academic press, New York, USA
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