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Effectiveness of electron beam irradiation in the control of Rhizoctonia solani

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
Proceedings of the International Conference on Development and Applications of Nuclear Technologies NUTECH-2011, 11-14 September 2011, Kraków, Poland
Języki publikacji
EN
Abstrakty
EN
Effectiveness of electron beam irradiation was evaluated against Rhizoctonia solani, which is one of the most dangerous soil-borne pathogen, causing stem base and root rot of many horticultural plants. Treatment of in vitro cultures with 0.5 kGy significantly inhibited the pathogen's growth and the spread of necrosis on chrysanthemum leaf blades inoculated with the irradiated cultures. Application of e-beam irradiation for peat disinfection resulted in a two-fold decrease rot development in chrysanthemum stem at a dose of 5 kGy and complete inhibition at 10 kGy. For the elimination of R. solani from composted pine bark and its mixture with peat, irradiation of both substrates with 15 kGy was necessary.
Czasopismo
Rocznik
Strony
551--554
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
autor
autor
  • Research Institute of Horticulture, 1/3 Konstytucji 3 Maja Str., 96-100 Skierniewice, Poland
Bibliografia
  • 1. Brasier C (2008) The biosecurity threat to the UK and global environment from international trade to plants. Plant Pathology 57:792–808
  • 2. Chmielewski AG, Haji-Saeid M (2004) Radiation technologies: past, present and future. Radiat Phys Chem 71:16–20
  • 3. Duda B, Orlikowski LB (2004) Rhizoctonia solani on coniferous seedlings in forest nurseries. J Plant Prot Res 44;3:175–180
  • 4. Gryczka U, Jakowiuk A, Migdał W, Kałuska I, Machaj B (2009) Application of dose reader CD-07 for depth-dose distribution measurements in the process of microbiological radiation decontamination. Nukleonika 54;4:261–265
  • 5. Gryczka U, Ptaszek M, Migdał W, Orlikowski LB (2010) Application of electron beam irradiation for inhibition of Fusarium oxysporum f. sp. dianthi activity. Nukleonika 55;3:359–362
  • 6. Grzędzińska D, Orlikowski LB (1980) Effectiveness of chemical compounds in desinfection of substrata in carnation growth. Prace Instytutu Sadownictwa i Kwiaciarstwa w Skierniewicach B 5:115–122 (in Polish)
  • 7. Migdał W, Orlikowski LB, Ptaszek M, Gryczka U (2012) Influence of electron beam irradiation on growth of Phytophthora cinnamomi and its control in substrates. Radiat Phys Chem 81;8:1012–1016
  • 8. Orlikowski LB, Migdał W, Ptaszek M, Gryczka U (2011) Effectiveness of electron beam irradiation in the control of some soilborne pathogens. Nukleonika 56;4:357–362
  • 9. Orlikowski LB, Szkuta G (2003) Phytophthora citricola on Rhododendron spp. in Polish nurseries. J Plant Prot Res 43;1:19–24
  • 10. Orlikowski LB, Trzewik A, Orlikowska T (2007) Water as potential source of Phytophthora citricola. J Plant Prot Res 47;2:125–132
  • 11. Ploetz R (2004) Diseases and pests: A review of their importance and menagement. InfoMusa 13;2:11–16
  • 12. Ptaszek M, Gryczka U, Migdał W, Orlikowski LB (2010) Application of irradiation for elimination of Sclerotinia sclerotiorum in substrates. Zesz Probl Post Nauk Rol 554:183–188 (in Polish)
  • 13. Yun H-J, Lim S-Y, Song H-P, Kim B-K, Chung B-Y, Kim D-H (2007) Reduction of pathogenic bacteria in organic compost using gamma irradiation. Radiat Phys Chem 76:1843–1846
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ8-0023-0047
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