Influence of κ/β-carrageenan from red alga Tichocarpus crinitus on development of local infection induced by tobacco mosaic virus in Xanthi-nc tobacco leaves
Tóm tắt
Từ khóa
Tài liệu tham khảo
Baba, M., Snoeck, R., Pauwels, R., and de Clercq, E., Sulfated Polysaccharides Are Potent and Selective Inhibitors of Various Enveloped Viruses, Including Herpes Simplex Virus, Cytomegalovirus, Vesicular Stomatitis Virus, and Human Immunodeficiency Virus, Antimicrob. Agents Chemother., 1988, vol. 32. pp. 1742–1745.
Chirkov, S.N., Chitosan Antiviral Activity, Prikl. Biokhim. Mikrobiol., 2002, vol. 38, pp. 5–13.
Heinkel, C.M., Hudspeth, M.E.S., Meganathan, R., and Zinnen, T.M., Further Characterization of Mycolaminaran-Induced Resistance: Temperature Sensitivity against Tobacco Mosaic Virus and Function against Cauliflower Mosaic Virus and Tomato Spotted Wilt Virus, Phytopathology, 1992, vol. 82, pp. 637–641.
Kopp, M., Rouster, J., Fritig, B., Darvill, A., and Albersheim, P., Host-Pathogen Interactions: 32. A Fungal Glucan Preparation Protects Nicotianae against Infection by Viruses, Plant Physiol., 1989, vol. 90, pp. 208–216.
Lakhmatova, I.T., Induction of Plant Resistance to Viruses Using Biologically Active Substances (Immunization), S-kh. Biol., 1992, no. 3, pp. 13–22.
Lapshina, L.A., Reunov, A.V., Nagorskaya, V.P., Zvyagintseva, T.N., and Shevchenko, N.M., Inhibitory Effect of Fucoidan from Brown Alga Fucus evanescens on the Spread of Infection Induced by Tobacco Mosaic Virus in Tobacco Leaves of Two Cultivars, Russ. J. Plant. Physiol., 2006, vol. 53, pp. 246–251.
Lyon, G.D., Reglinski, T., and Newton, A.C., Novel Disease Control Compounds: The Potential to “Immunize” Plants against Infection, Plant Pathol., 1995, vol. 44, pp. 407–427.
Mayhew, D.E. and Ford, R.E., An Inhibitor of Tobacco Mosaic Virus Produced by Physarum potycephalum, Phytopathology, 1971, vol. 61, pp. 636–640.
McClure, M.O., Moore, J.-P., Blanc, D.F., et al., Investigations into the Mechanism by Which Sulfated Polysaccharides Inhibit HIV Infection In Vitro, AIDS Res. Human Retrovir., 1992, vol. 8, pp. 19–26.
Matthews R.E.F., Plant Virology, New York: Academic, 1981.
Otsuki, Y., Takebe, I., Onho, T., Fukuda, M., and Okada, Y., Reconstitution of Tobacco Mosaic Virus Rods Occurs Bidirectionally from an Internal Initiation Region: Demonstration by Electron Microscopic Serology, Proc. Natl. Acad. Sci. USA., 1977, vol. 74, pp. 1913–1917.
Pospieszny, H., Chirkov, S., and Atabekov, J., Induction of Antiviral Resistance in Plant by Chitosan, Plant Sci., 1991, vol. 79, pp. 63–68.
Reunov, A.V., Lapshina, L.A., Nagorskaya, V.P., and Elyakova, L.A., Effect of 1.3;1.6-β-D-Glucan on Infection of Detached Tobacco Leaves with Tobacco Mosaic Virus. J. Phytopathol., 1996, vol. 144, pp. 247–249.
Reunov, A., Nagorskaya, V., Lapshina, L., Yermak, I., and Barabanova, A., Effect of κ/β-Carragenan from Red Alga Tichocarpus crinitus (Tichocarpaceae) on Infection of Detached Tobacco Leaves with Tobacco Mosaic Virus, J. Plant Diseases Protect., 2004, vol. 111, pp. 165–172.
Reunov, A.V., Virusnyi patogenez i zashchitnye mekhanizmy rastenii (Viral Pathogenesis and Protective Mechanisms in Plants), Vladivostok: Dal’nauka, 1999.
Reunov, A.V., Lapshina, L.A., Nagorskaya, V.P., and Elyakova L.A., The Inhibitory Effect of 1,3;1,6-β-D-Glucan on Potato Virus X Infection of Gomphrena and Datura Leaves, Russ. J. Plant. Physiol., 2000, vol. 47, pp. 211–214.
Reunova, G.D., Trubitsin, A.G., and Reifman, V.G., Effect of Actinomycin D on Tobacco Mosaic Virus (TMV) Accumulation in Isolated Tobacco Protoplasts under Varying Light Conditions, Virology, 1988, vol. 163, pp. 198–200.
Rouhier, P., Kopp, M., Begot, V., Bruneteau, M., and Fritig, B., Structural Features of Fungal β-D-Glucans for the Efficient Inhibition of the Initiation of Virus Infection on Nicotiana tabacum, Phytochemistry, 1995, vol. 39, pp. 57–62.
Slováková L., Lišková D., Capek P., Kubacková, M., Kakoniová, D., and Karacsonyi, S., Defense Responses against TNV Infection Induced by Galactoglucomannan-Derived Oligosaccharides in Cucumber Cells. Eur. J. Plant Pathol., 2000, vol. 106, pp. 543–553.
Stübler, D. and Buchenauer, H., Antiviral Activity of the Glucan Lichenan (Poly-β{1 → 3, 1 → 4}D-Anhydroglucose): 1. Biological Activity in Tobacco Plants, J. Phytopathol., 1996a, vol. 144, pp. 37–43.
Stübler, D. and Buchenauer, H., Antiviral Activity of the Glucan Lichenan (Poly-β{1 → 3, 1 → 4}D-Anhydroglucose): 2. Studies on the Mode of Action, J. Phytopathol., 1996b, vol. 144, pp. 45–52.
Šubíkova V., Slováková I., Farkaš V., Inhibition of Tobacco Necrosis Virus Infection by Xyloglucan Fragments, Z. Pflanzenkrankh. Pflanzensch., 1994, vol. 101, pp. 128–131.
Urbakh, V. Yu., Biometricheskie metody (Biometric Methods), Moscow: Nauka, 1964.
Yermak, I.M., Kim, Y.H., Titlyanov, E.A., et al., Chemical Structure and Gel Properties of Carrageenans from Algae Beloning to the Gigartinaceae and Tichocarpaceae Collected from the Russian Pacific Coast, J. Appl. Phycol., 1999, vol. 11, pp. 41–48.
Yermak, I.M., Interaction of Bacterial Lipopolysaccharides with Proteins and Polysaccharides. Modification of Liposaccharide Physiological Activity, Doctoral (Biol.) Dissertation, Vladivostok: Pacific Inst. Bioorg. Chem., Far East Division, Russ. Akad. Sci., 2006.