Monitoring by real-time PCR of three water-borne zoosporic Pythium species in potted flower and tomato greenhouses under hydroponic culture systems
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K. Kageyama | Y. Ishiguro | H. Nagai | Hirofumi Suzuki | H. Suga | T. Tsuji | N. Miyake | Mingzhu Li | K. Otsubo
[1] K. Kageyama,et al. Wilt and root rot of poinsettia caused by three high-temperature-tolerant Pythium species in ebb-and-flow irrigation systems , 2014, Journal of General Plant Pathology.
[2] K. Kageyama,et al. Simultaneous detection by multiplex PCR of the high-temperature-growing Pythium species: P. aphanidermatum, P. helicoides and P. myriotylum , 2013, Journal of General Plant Pathology.
[3] K. Kageyama,et al. Simultaneous Detection and Quantification of Phytophthora nicotianae and P. cactorum, and Distribution Analyses in Strawberry Greenhouses by Duplex Real-time PCR , 2013, Microbes and environments.
[4] H. Ohtake,et al. Blast pathogen of Festuca arundinacea found in Miyagi Prefecture, northern Honshu island, Japan. , 2013 .
[5] C. Lévesque,et al. Molecular Detection and Quantification of Pythium Species: Evolving Taxonomy, New Tools, and Challenges. , 2013, Plant disease.
[6] K. Kageyama,et al. A Multiplex PCR for the Detection of Phytophthora nicotianae and P. cactorum, and a Survey of Their Occurrence in Strawberry Production Areas of Japan. , 2011, Plant disease.
[7] C. Brasier,et al. Phytophthora chrysanthemi sp. nov., a new species causing root rot of chrysanthemum in Japan , 2011, Mycological Progress.
[8] K. Kageyama,et al. Development of Multiplex PCR to Detect Five Pythium Species Related to Turfgrass Diseases , 2010 .
[9] M. Chilvers,et al. A Real-Time, Quantitative PCR Seed Assay for Botrytis spp. that Cause Neck Rot of Onion. , 2007, Plant disease.
[10] M. Hyakumachi,et al. Pythium and Phytophthora species associated with root and stem rots of kalanchoe , 2007, Journal of General Plant Pathology.
[11] C. J. Nielsen,et al. Efficacy of biosurfactants in the management of Phytophthora capsici on pepper in recirculating hydroponic systems , 2006 .
[12] E. J. Kontanis,et al. Evaluation of Real‐Time PCR Amplification Efficiencies to Detect PCR Inhibitors , 2006, Journal of forensic sciences.
[13] J. V. van Elsas,et al. Characterization of the Microbial Community Involved in the Suppression of Pythium aphanidermatum in Cucumber Grown on Rockwool. , 2005, Phytopathology.
[14] C. Hong,et al. Plant Pathogens in Irrigation Water: Challenges and Opportunities , 2005 .
[15] C. Lévesque,et al. Molecular phylogeny and taxonomy of the genus Pythium. , 2004, Mycological research.
[16] Mikihiko Suzuki,et al. Characterization and identification of asexual strains of Pythium associated with root rot of rose in Japan , 2003 .
[17] K. Kageyama,et al. Refined PCR protocol for detection of plant pathogens in soil , 2003, Journal of General Plant Pathology.
[18] C. Chang,et al. Detection of the low‐germination‐rate resting oospores of Pythium myriotylum from soil by PCR , 2003, Letters in applied microbiology.
[19] Elaine Ward,et al. Molecular diagnostics for fungal plant pathogens. , 2003, Pest management science.
[20] Alison Wakeham,et al. Comparison of serological, culture, and bait methods for detection of Pythium and Phytophthora zoospores in water , 2002 .
[21] C. Hong,et al. Comparison of membrane filters as a tool for isolating pythiaceous species from irrigation water. , 2002, Phytopathology.
[22] A. Nitsche,et al. Real-time PCR in virology. , 2002, Nucleic acids research.
[23] K. Kageyama,et al. Root Rot of Miniature Roses Caused by Pythium helicoides , 2002, Journal of General Plant Pathology.
[24] Allen L. Szalanski,et al. Identification of Seed Gall Nematodes of Agronomic and Regulatory Concern with PCR-RFLP of ITS1. , 2001, Journal of nematology.
[25] N. Thelwell,et al. Mode of action and application of Scorpion primers to mutation detection. , 2000, Nucleic acids research.
[26] M. Hyakumachi,et al. Surface Disinfestation of Resting Spores of Plasmodiophora brassicae Used to Infect Hairy Roots of Brassica spp. , 1999, Phytopathology.
[27] P. Bridge,et al. Interpretation of PCR methods for species definition. , 1998 .
[28] R. Elander,et al. Polymerase chain reaction in mycology: an overview. , 1998 .
[29] Allen L. Szalanski,et al. Identification of Cyst Nematodes of Agronomic and Regulatory Concern with PCR-RFLP of ITS1. , 1997, Journal of nematology.
[30] A. D. Cock,et al. 5S ribosomal RNA gene spacers as species-specific probes for eight species of Pythium , 1996 .
[31] Weidong Chen. Restriction fragment length polymorphisms in enzymatically amplified ribosomal DNAs of three heterothallic Pythium species , 1992 .
[32] T. White. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics , 1990 .
[33] A. J. Plaats-Niterink. Monograph of the genus Pythium , 1981 .
[34] 渡辺 恒雄. Pathogenicity of Pythium myriotylum isolated from strawberry roots in Japan. , 1977 .
[35] G. M. Waterhouse. Key to Pythium Pringsheim , 1967 .
[36] E. Mcclintock. A monograph of the genus Hydrangea , 1957 .