Effect of Chitosan on Systemic Viral Infection and Some Defense Responses in Potato Plants (original) (raw)

REFERENCES

  1. Doares, S.H., Syrovets, T., Weiler, E.W., and Ryan, C.A., Oligogalacturonides and Chitosan Activate Plant Defensive Genes through the Octadecanoid Pathway, Proc. Natl. Acad. Sci. USA, 1995, vol. 92, pp. 4095–4098.
    Google Scholar
  2. Ryan, C.A., Oligosaccharides Signalling in Plants, Annu. Rev. Cell Biol., 1987, vol. 3, pp. 295–317.
    Google Scholar
  3. Benhamou, N., Elicitor-Induced Plant Defense Pathways, Trends Plant Sci., 1996, vol. 1, pp. 233–240.
    Google Scholar
  4. Pospieszny, H., Chirkov, S., and Atabekov, J., Induction of Antiviral Resistance in Plants by Chitosan, Plant Sci., 1991, vol. 79, pp. 63–68.
    Google Scholar
  5. Chirkov, S.N., Surguchova, N., and Atabekov, J.G., Chitosan Inhibits Systemic Infections Caused by DNA-Containing Plant Viruses, Arch. Phytopathol. Plant Protect., 1994, vol. 29, pp. 21–24.
    Google Scholar
  6. Surguchova, N.A., Varitsev, Yu.A., and Chirkov, S.N., The Inhibition of Systemic Viral Infections in Potato and Tomato Plants by Chitosan Treatment, J. Russ. Phytopathol. Soc., 2000, vol. 1, pp. 59–62.
    Google Scholar
  7. Pospieszny, H., Antiviroid Activity of Chitosan, Crop Protect., 1997, vol. 16, pp. 105–106.
    Google Scholar
  8. Perekhod, E.A., Chalenko, G.I., Gerasimova, N.G., Vasyukova, N.I., Ozeretskovskaya, O.L., Il'ina, A.V., Tatarinova, N.Yu., Anisimova, M.V., and Varlamov, V.P., Chitosan as a Regulator of Potato Resistance to Late Blight, Dokl. Ross. Akad. Nauk, 1997, vol. 355, pp. 120–122.
    Google Scholar
  9. Chirkov, S.N., Surguchova, N., Gamzazade, A.I., Abdulabekov, I.M., and Pospieszny, H., A Comparative Efficiency of Chitosan Derivatives as Inhibitors of Viral Infection in Plants, Dokl. Ross. Akad. Nauk, 1998, vol. 360, pp. 271–273.
    Google Scholar
  10. Pospieszny, H., Struszczyk, H., and Cajca, M., Biological Activity of _Aspergillus_-Degraded Chitosan, Chitin Enzymol., 1996, vol. 2, pp. 385–389.
    Google Scholar
  11. Ilyina, A.V., Tatarinova, N.Yu., and Varlamov, V.P. The Preparation of Low-Molecular-Weight Chitosan Using Chitinolytic Complex from Streptomyces kurssanovii, Process Biochem., 1999, vol. 34, pp. 875–879.
    Google Scholar
  12. Mizenina, O.A., Borisova, O.V., Novikov, V.K., Evtushenko, O.A., Baykov, A.A., and Atabekov, J.G., Inorganic Pyrophosphatase from E. coli as a Label for the Detection of Plant Viruses by ELISA, J. Phytopathol., 1991, vol. 133, pp. 278–288.
    Google Scholar
  13. Kohle, H., Jeblick, W., Poten, F., Blaschek, W., and Kauss, H., Chitosan-Elicited Callose Synthesis in Soybean Cells as a Ca2+-Dependent Process, Plant Physiol., 1985, vol. 77, pp. 544–551.
    Google Scholar
  14. Miller, G.L., Use of Dinitrosalicylic Acid Reagents for Determination of Reducing Sugar, Anal. Chem., 1959, vol. 31, pp. 426–428.
    Google Scholar
  15. Bannikova, G.E., Timofeeva, G.N., Lopatin, S.A., and Varlamov, V.P., Ligand-Exchange Chromatography of Bacterial Endonuclease from Serratia marcescens, Biotekhnologiya, 1988, vol. 4, pp. 231–234.
    Google Scholar
  16. Tikhonov, V.E., Radigina, L.A., Yamskov, I.A., Gulyaeva, N.D., Ilyina, A.V., Anisimova, M.V., Varlamov, V.P., and Tatarinova, N.Yu., Affinity Purification of Major Chitinases Produced by Streptomyces kurssanovii, Enzyme Microb. Technol., 1997, vol. 21, pp. 947–959.
    Google Scholar
  17. Laemmli, U.K., Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4, Nature, 1970, vol. 227, pp. 680–685.
    Google Scholar
  18. Galiana, E., Bonnet, Ph., Conrod, S., Keller, H., Panabieres, F., Ponchet, M., Poupet, A., and Ricci, P., RNase Activity Prevents the Growth of a Fungal Pathogen in Tobacco Leaves and Increases upon Induction of Systemic Acquired Resistance with Elicitin, Plant Physiol., 1997, vol. 115, pp. 1557–1567.
    Google Scholar
  19. Pospieszny, H. and Atabekov, J.G., Effect of Chitosan on the Hypersensitive Reaction of Bean to Alfalfa Mosaic Virus, Plant Sci., 1989, vol. 62, pp. 29–31.
    Google Scholar
  20. Pospieszny, H., Struszczyk, H., Chirkov, S.N., and Atabekov, J.G., New Application of Chitosan in Agriculture, Chitin World, Karnicki, Z.S., Ed., Gdynya: Wirschaftsverlag NW, 1995, pp. 246–254.
    Google Scholar
  21. Bell, A.A., Biochemical Mechanisms of Disease Resistance, Annu. Rev. Plant Physiol., 1981, vol. 32, pp. 21–81.
    Google Scholar
  22. Mauch, F., Hadwiger, L.A., and Boller, T., Ethylene: Symptom, Not Signal for the Induction of Chitinase and β-1,3-Glucanase in Pea Pods by Pathogens and Elicitors, Plant Physiol., 1984, vol. 76, pp. 607–611.
    Google Scholar
  23. Beffa, R.S., Hofer, R.-M., Thomas, M., and Meins, F., Decreased Susceptibility to Viral Disease of β-1,3-Glucanase-Deficient Plants Generated by Antisense Transformation, Plant Cell, 1996, vol. 8, pp. 1001–1011.
    Google Scholar
  24. Watanabe, Yu., Ogawa, T., Takahashi, H., Ishida, I., Takeuchi, Y., Yamamoto, M., and Okada, Y., Resistance against Multiple Plant Viruses in Plants Mediated by a Double Stranded-RNA Ribonuclease, FEBS Lett., 1995, vol. 372, pp. 165–168.
    Google Scholar
  25. Panfilova, Z.I., Batalino, T.A., and Salganik, R.I., Ispol'zovanie mikroorganizmov v sel'skom khozyaistve i promyshlennosti (Using Microorganisms in Agriculture and Industry), Novosibirsk: Nauka, 1982.
    Google Scholar
  26. Klein, R.E. and Livingston, C.H., Eradication of Potato Viruses X and S from Potato Shoot-Tip Cultures with Ribavirin, Phytopathology, 1983, vol. 73, pp. 1049–1050.
    Google Scholar

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