References
Chen, B., Choi, G.H. and Nuss, D.L. (1994). Attenuation of fungal virulence by synthetic infectious hypovirus transcripts. Science, 264: 1762-1764.
Choi, G.H. and Nuss, D.L. (1992). Hypovirulence of chestnut blight fungus conferred by an infectious viral cDNA. Science, 257: 800-803.
Choi, G.H., Pawlyk, D.M. and Nuss, D.L. (1991). The autocatalytic protease p29 encoded by a hypovirulence-associated virus of the chestnut blight fungus resembles the potyvirus-encoded protease HC-Pro. Virology, 183: 747-752.
Dodds, J.A. (1980). Revised estimates of the molecular weights of dsRNA segments in hypovirulent strains of Endothia parasitica. Phytopathology, 70: 1217-1220.
Durbahn, C.M. (1992). Molecular characterization of dsRNA associated with hypovirulence in Michigan isolates of Cryphonectria parasitica. “In Botany and Plant Pathology”, Michigan State Univ., East Lansing, MI.
Enebak, S.A. and MacDonald, W.L. (1994). Effect of dsRNA associated with isolates of Cryphonectria parasitica from the central Appalachians and their relatedness to other dsRNAs from North America and Europe. Phytopathology, 84: 528-534.
Fahima, T., Kazmierczak, P., Hansen, D.R., Pfeiffer, P. and Van Alfen, N.K. (1993). Membrane-associated replication of an unencapsidated double-stranded RNA of the fungus, Cryphonectria parasitica. Virology, 195: 81-89.
Fahima, T., Wu, Y., Zhang, L. and Van Alfen, N.K. (1994). Identification of the putative RNA polymerase of Cryphonectria hypovirus in a solubilized replication complex. J. Virol., 68: 6116-6119.
Hansen, D.R., van Alfen, N.K., Gillies, K. and Powell, W.A. (1985). Naked dsRNA associated with hypovirulence of Endothia parasitica is packaged in fungal vesicles. J. Gen. Virol., 66: 2605-2614.
Hillman, B.I., Halpern, B.T. and Brown, M.P. (1994). A viral dsRNA element of the chestnut blight fungus with a distinct genetic organization. Virology, 201: 241-250.
Hiremath, S., L'Hostis, B., Ghabrial, S.A. and Rhoads, R.E. (1986). Terminal structure of hypovirulence-associated dsRNAs in the chestnut blight fungus Endothia parasitica. Nuc. Acid. Res., 14: 9877-9896.
Newhouse, J.R., Hoch, H.C. and MacDonald, W.L. (1983). The ultrastructure of Endothia parasitica. Comparison of a virulent with a hypovirulent isolate. Can. J. Bot., 61: 389-399.
Newhouse, J.R., MacDonald, W.L. and Hoch, H.C. (1990). Virus-like particles in hyphae and conidia of European hypovirulent (dsRNA-containing) strains of Cryphonectria parasitica. Can. J. Bot. 68: 90-101.
Nuss, D.L. (1996). Using hypoviruses to probe and perturb signal transduction underlying fungal pathogenesis. Plant Cell, 8: 1845-1853.
Shapira, R., Choi, G.H. and Nuss, D.L. (1991). Virus-like genetic organization and expression strategy for a double-stranded RNA genetic element associated with biological control of chestnut blight. EMBO J., 10: 731-739.
Shapira, R. and Nuss, D.L. (1991). Gene expression by a hypovirulence-associated virus of the chestnut blight fungus involves two papain-like protease activities. J. Biol. Chem., 266: 19419-19425.
Tartaglia, J., Paul, C.P., Fulbright, D.W. and Nuss, D.L. (1986). Structural properties of double-stranded RNAs associated with biological control of chestnut blight fungus. Proc. Natl. Acad. Sci. USA, 83: 9109-9113.
van Alfen, N.K. (1986). Hypovirulence of Endothia (Cryphonectria) parasitica and Rhizoctonia solani. In: Buck, K.W. (ed). “Fungal Virology”, CRC Press, Boca Raton FL, pp 143-162.
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