Adrian M, Timmins PA, Witz J (1992) In vitro decapsidation of turnip yellow mosaic virus investigated by cryo-electron microscopy: a model for the decapsidation of a small isometric virus. J Gen Virol 73: 2079–2083
Google Scholar
Allison R, Thompson C, Ahlquist P (1990) Regeneration of a functional RNA virus genome by recombination between deletion mutants and requirement for cowpea chlorotic mottle virus 3a and coat genes for systemic infection. Proc Natl Acad Sci USA 87: 1820–1824
Google Scholar
Anderson EJ, Stark DM, Nelson RS, Powell PA, Tumer NE, Beachy RN (1989) Transgenic plants that express the coat protein genes of TMV and AIMV interfere with disease development of some non-related viruses. Phytopathology 79: 1284–1290
Google Scholar
Barker H, Reavy B, Kumar A, Webster KD, Mayo MA (1992) Restricted virus multiplication in potatoes transformed with the coat protein gene of potato leafroll luteovirus: similarities with a type of host gene-mediated resistance. Ann Appl Biol 120: 55–64
Google Scholar
Baulcombe DC, Hamilton WDO, Mayo MA, Harrison BD (1987) Resistance to viral disease through expression of viral genetic material from the plant genome In: Plant resistance to viruses. Wiley, Chichester pp 170–184 (Ciba Found. Symp. 133)
Google Scholar
Bertioli DJ, Cooper JI, Edwards ML, Hawes WS (1992) Arabis mosaic nepovirus coat protein in transgenic tobacco lessens disease severity and virus replication. Ann Appl BIol 120: 47–54
Google Scholar
Bertioli DJ, Harris RD, Edwards ML, Cooper JI, Hawes WS (1991) Transgenic plants and insect cells expressing the coat protein of arabis mosaic virus produce empty virus-like particles. J Gen Virol 72: 1801–1809
Google Scholar
Bevan MW, Mason SE, Goelet P (1985) Expression to tobacco mosaic virus coat protein by a cauliflower mosaic virus promoter in plants transformed by Agrobacterium. EMBO J 4: 1921–1926
Google Scholar
Bol JF, van Huijsduijnen H, Cornelissen BJC, van Kan JAL (1987) Characterization of pathogenesis-related proteins and genes. In: Evered D, Harnett S (eds) Plant resistance to viruses. John Wiley, Chichester New York, pp 72–91
Google Scholar
Bol JF (1988) Structure and expression of plant genes encoding pathogenesis-related protiens. In: Verma DPS, Goldberg RB (eds) Temporal and spatial regulation of plant genes. Springer, Wien New York, p 201
Google Scholar
Brault V, Candresse T, le Gall O, Delbos RP, Lanneau M, Dunez J (1993) Genetically engineered reistance against grapevine chrome mosaic nepovirus. Plant Mol Biol 21: 89–97
Google Scholar
Brisco MJ, Hull R, Wilson TMA (1986) Swelling of isometric and of baccilliform plant virus nucleocapsids is required for virus-specific protein synthesis in vitro. Virology 148: 210–279
Google Scholar
Butler PJG (1984) The current picture of the structure and assembly of tobacco mosaic virus. J Gen Virol 65: 253–279
Google Scholar
Cadman CH, Harrison BD (1959) Studies on the properties of soil-borne viruses of the tobacco rattle type occurring in Scotland. Ann Appl Biol 47: 542–556
Google Scholar
Carr JP, Beachy RN, Klessig DF (1989) Are the PR1 proteins of tobacco involved in genetically engineered resistance to TMV? Virology 169: 470–473
Google Scholar
Clark WG, Register III JC, Eichholtz DA, Sanders PR, Fraley RT, Beachy RN (1990) Tissue-specific expression of the TMV coat protein in transgenic tobacco plants affects the level of coat protein-mediated virus protection. Virology 179: 64–647
Google Scholar
Cuozzo M, O'Connell KM, Kaniewski W, Fang R-X, Chua H, Tumer NE (1988) Viral protection in transgenic plants expressing the cucumber mosaic virus coat protein or its antisense RNA. Bio/Technology 6: 549–557
Google Scholar
Cutt JR, Harpster MH, Dixon DC, Carr JP, Dunsmuir P, Klessig DF (1989) Disease resistance to tobacco mosaic virus in transgenic tobacco plants that constitutively express the pathogenesis-related PR1b gene. Virology 173: 89–97
Google Scholar
de Haan P, Gielen JJL, Prins M, Wijkamp MG, van Schepen A, Peter D, van Grinsven MQJM, Goldbach RW (1992) Characterization of RNA-mediated resistance to tomato spotted wilt virus in transgenic tobacco plants. Bio/Technology 10: 1133–1137
Google Scholar
de Zoeten GA, Fulton RW (1975) Understanding generates possibilities. Phytopathology 65: 221–222
Google Scholar
Deom CM, Lapidot M, Beachy RN (1992) Plant virus movement proteins. Cell 69: 221–224
Google Scholar
Dodds JA, Lee SQ, Tiffany M (1985) Cross-protection between strains of cucumber mosaic virus: Effect of host and type of inoculum on accumulation of virions and double-stranded RNA of the challenge strain. Virology 144: 301–309
Google Scholar
Fang G, Grumet R (1993) Genetic engineering of potyvirus resistance using constructs derived from zucchini yellow mosaic virus coat protein gene. Mol Plant Microbe Interact 6: 358–367
Google Scholar
Fehér A, Skryabin KG, Balázs E, Preiszner J, Shulga OA, Zakharyev VM, Dudits D (1992) Expression of PVX coat protein gene under the control of extensin-gene promoter confers virus resistance on transgenic potato plants. Plant Cell Rep 11: 48–52
Google Scholar
Fitch MMM, Manshardt RM, Gonsalves D, Slightom JL, Sanford JC (1992) Virus resistant papaya plants derived from tissues bombarded with the coat protein gene of papaya ringspot virus. Bio/Technology 10: 1466–1472
Google Scholar
Gerber M, Sarkar S (1989) The coat protein of tobacco mosaic virus does not play a significant role for cross-protection. J Phytopathol 124: 323–33
Google Scholar
Gibs AJ (1969) Plant virus classification. Adv Virus Res 14: 263–328
Google Scholar
Gonsalves D, Chee P, Slightom JL, Provedentia R (1991) Field evaluation of transgenic cucumber plants expressing the coat protein gene of cucumber mosaic virus. Phytopathology [Suppl]:292
Halk EL, Merlo DJ, Liao LW, Jarvis NP, Nelson SE (1989) Resistance to alfalfa mosaic virus in transgenic tobacco and alfalfa. In: Staskawicz B, Ahlquist P, Yolder O (eds) Molecular biology of plant-pathogen interactions, Alan R. Liss, New York
Google Scholar
Harrison BD, Murant AF, Mayo MA, Roberts IM (1974) Distribution of determinants for symptom production, host range and nematode transmissibility between the two RNA components of raspberry ringspot virus. J Gen Virol 22: 233–242
Google Scholar
Hayakawa T, Zhu Y, Itoh K, Kimura Y, Izawa T, Shimamoto K, Toriyama S (1992) Genetically engineered rice resistant to rice stripe virus, an insecttransmitted virus. Proc Natl Acad Sci USA 89: 9865–9869
Google Scholar
Hemenway C, Fang R-X, Kaniewski WK, Chua N-H, Tumer NE (1988) Analysis of the mechanism of protection in transgenic plants expressing the potato virus X Coat protein or its antisense RNA. EMBO J 7: 1273–1280
Google Scholar
Hill KK, Jarvis-Eagan N, Halk EL, Krahn KJ, Liao LW, Mathewson RS, Merlo DJ, Nelson SE, Rahka KE, Loesch-Fries LS (1991) The development of virus-resistant alfalfa, Medicago sativa L. Bio/Technology: 373–377
Hoekema A, Huisman MJ, Molendijk L, van den Elzen PJM, Cornelissen BJC (1989) The genetic engineering of two commercial potato cultivars for resistance to potato virus X. Bio/Technology 7: 273–278
Google Scholar
Horikoshi M, Nakayama M, Yamaoka N, Furosawa I, Shishiyama J (1987) Brome mosaic virus coat protien inhibits viral RNA synthesis in vitro. Virology 158: 15–19
Google Scholar
Hull R (1989) The movement of viruses in plants. Annu Rev Phytopathol 27: 213–240
Google Scholar
Jefferson RA, Kavanagh TA, Bevan MW (1987) GUS fusions: β-glucuronidase as a sensitive and versatile gene fusion marker in higher plants. EMBO J 6: 3901–3907
Google Scholar
Kallerhoff J, Perez P, Bouzoubaa S, Ben Tahar S, Perret J (1990) Beet necrotic yellow vein virus coat protein-mediated protection on sugarbeet (Beta vulgaris L.) protoplasts. Plant Cell Rep 9: 224–228
Google Scholar
Kawchuk LM, Martin RR, McPherson J (1990) Resistance in transgenic potato expressing the potato leafroll virus coat protein gene. Mol Plant Microbe Interact 3: 301–307
Google Scholar
Kawchuk LM, Martin RR, McPherson J (1991) Sense and antisense RNA-mediated resistance to potato leafroll virus in Russet Burbank potato plants. Mol Plant Microbe Interact 4: 247–253
Google Scholar
Lawson C, Kaniewski W, Haley L, Rozman R, Newell C, Sanders P, Tumer NE (1990) Engineering resistance to mixed virus infection in a commercial potato cultivar: resistance to potato virus X and potato virus Y in transgenic Russet Burbank. Bio/Technology 8: 127–134
Google Scholar
Leisner SM, Turgeon R, Howell SH (1993) Effects of host plant development and genetic determinants on the long distance movement of cauliflower mosaic virus in Arabidopsis. Plant Cell 5: 191–202
Google Scholar
Lindbo JA, Dougherty WG (1992) Pathogen-derived resistance to a potyvirus: Immune and resistant phenotypes in transgenic tobacco expressing altered forms of a potyvirus coat protein nucleotide sequence. Mol Plant Microbe Interact 4: 247–253
Google Scholar
Lindbo JA, Silva-Rosales L, Proebsting WM, Dougherty WG (1993) Induction of a highly specific antiviral state in transgenic plants: implications for regulation of gene expression and viral resistance. Plant Cell 5: 1749–1759
Google Scholar
Ling K, Namba S, Gonsalves C, Slightom JL, Gonsalves D (1991) Protection against detrimental effects of potyvirus infection in transgenic tobacco plants expressing the papaya ringspot virus coat protein gene. Bio/Technology 9: 752–758
Google Scholar
Loesch-Fries LS, Merlo D, Zinner T, Burhop L, Hill K, Krahn K, Nelson S, Halk E (1987) Expression of alfalfa mosaic virus RNA 4 intransgenic plants confers virus resistance. EMBO J 6: 1845–1851
Google Scholar
MacKenzie DJ, Ellis PJ (1992) Resistance to tomato spotted wilt virus infection in transgenic tobacco expressing the viral nucleocapsid gene. Mol Plant Microbe Interact 5: 34–40
Google Scholar
MacKenzie DJ, Tremaine JH, McPherson J (1991) Genetically engineered resistance to potato virus S in potato cultivar Russet Burbank. Mol Plant Microbe Interact 4: 95–102
Google Scholar
McKinney H (1929) Mosaic diseases in the Canary Islands, West Africa, and Gibraltar. J Agric Res 39: 557–578
Google Scholar
Mundry KW, Watkins PAC, Ashfield T, Plaskitt KA, Eisele-Walter S, Wilson TMA (1991) Complete uncoating of the 5′ leader sequence of tobacco mosaic virus RNA occurs rapidly and is required to initiate cotranslational virus disassembly in vitro. J Gen Virol 72: 769–777
Google Scholar
Murry LE, Elliot LG, Capitant SA, West JA, Hanson KK, Scarafia L, Johnston S, DeLuca-Flaherty C, Nichols S, Cunanan D, Dietrich PS, Mettler SD, Warnick DA, Rhodes C, Sinibaldi RM, Brunke KJ (1993) Transgenic corn plants expressing MDMV strain B coat protein are resistant to mixed infections of maize dwarf mosaic virus and maize chlorotic mottle virus. Bio/Technology 11: 1559–1564
Google Scholar
Nakajima M, Hayakawa T, Nakamura I, Suzuki M (1993) Protection against cucumber mosaic virus (CMV) strains O and Y and chrysanthemum mild mottle virus in transgenic tobacco plants expressing CMV-O coat protein. J Gen Virol 74: 319–322
Google Scholar
Namba S, Ling K, Gonsalves C, Gonsalves D, Slightom JL (1991) Expression of the gene encoding the coat protein of cucumber mosaic virus (CMV) strain WL appears to provide protection to tobacco plants against injection by several different CMV strains. Gene 107: 181–188
Google Scholar
Nejidat A, Beachy RN (1989) Decreased levels of TMV coat protein in transgenic plant at elevated temperatures reduced resistance to TMV infection. Virology 173: 531–538
Google Scholar
Nejidat A, Beachy RN (1990) Transgenic tobacco plants expressing a coat protein gene of tobacco mosaic virus are resistant to some other tobamoviruses. Mol Plant Microbe Interact 3: 247–251
Google Scholar
Nelson RS, Powell-Abel P, Beachy RN (1987) Lesions and virus accumulation in inoculated transgenic tobacco plants expressing the coat protein gene of tobacco mosaic virus. Virology 158: 126–132
Google Scholar
Nelson RS, McCormick SM, Delanny X, Dube' P, Layton J, Anderson EJ, Kaniewska M, Proksch RK, Horsch RB, Rogers SG, Fraley RT, Beachy RN (1988) Virus tolerance, plant growth, and field performance of transgenic tomato plants expressing coat proteins from tobacco mosaic virus. Bio/Technology 6: 403–409
Google Scholar
Okuno T, Nakayama M, Yoshida S, Furusawa I, Komiya T (1993) Comparative suseptibility of transgenic tobacco plants and protoplasts expressing the coat protein gene of cucumber mosiac virus to infection with virions and RNA. Phytopathology 83: 542–547
Google Scholar
Osbourn JK, Watts JW, Beachy RN, Wilson TMA (1989a) Evidence that nucleocapsid disassembly and a later step in virus replication are inhibited in transgenic tobacco protoplasts expressing TMV coat protein. Virology 172: 370–373
Google Scholar
Osbourn JK, Plaskitt KA, Watts JW, Wilson TMA (1989b) Tobacco mosaic virus coat protein and reporter gene transcripts containing the TMV origin-of-assembly sequence do not interact in double-transgenic tobacco plants: implications for coat protein-mediated protection. Mol Plant Microbe Interact 2: 340–345
Google Scholar
Pang S-Z, Slightom JL, Gonsalves D (1993) Different mechanisms protect transgenic tobacco against tomato spotted wilt and impatients necrotic spot tospoviruses. Bio/Technology 11: 818–824
Google Scholar
Pines O, Inouye M (1986) Anti-sense RNA regulation in prokaryotes. Trends Genet 2: 284–287
Google Scholar
Powell P, Stark DM, Sanders PR, Beachy RN (1989) Protection against tobacco mosaic virus in transgenic plants that express TMV antisense RNA. Proc Natl Acid Sci USA 86: 6949–6952
Google Scholar
Powell PA, Sanders PR, Tumer N, Fraley RT, Beachy RN (1990) Protection against tobacco mosaic virus infection in transgenic plants requires accumulation of coat protein sequences rather than coat protein RNA sequences. Virology 175: 124–130
Google Scholar
Powell-Abel P, Nelson RS, De B, Hoffmann N, Rogers SG, Fraley RT, Beachy RN (1986) Delay of disease development in transgenic plants that express the tobacco mosaic virus coat protein gene. Science 232: 738–743
Google Scholar
Quemada H, Gonsalves D, Slightom JL (1991) CMV-C coat protein gene expression in toabcco: protection against infection by CMV strains transmitted mechanically or by aphids. Phytopathology 81: 794–802
Google Scholar
Register JC III, Beachy RN (1988) Resistance to TMV in transgenic plants results from interference with an early event in infection. Virology 166: 524–532
Google Scholar
Register JC III, Beachy RN (1989) Effect on protein aggregation state on coat proteinmediated protection against tobacco mosaic virus using a transient protoplast assay. Virology 173: 656–663
Google Scholar
Regener F, da Câmara Machado A, da Câmara Machado ML, Steinkellner H, Mattanovich D, Hanzer H, Weiss, H Katinger H (1992) Coat protein mediated resistance to plum pox virus in Nicotiana clevelandii and N. benthamiana. Plant Cell Rep 11: 30–33
Google Scholar
Rogers SG, Fraley RT, Horsch RB, Levine AD, Flick JS Brand LA, Fink CL, Mozer T, O'Connell K, Sanders PR (1985) Evidence for ribosome scanning during translation initiation of mRNAs in transformed plant cells. Plant Mol Biol Rep 3: 111–116
Google Scholar
Rubino L, Caprioti G, Lupo R, Russo M (1993) Resistance to cymbidium ringspot tombusvirus infection intransgenic Nicotiana benthamiana plants expressing the virus coat protein gene. Plant Mol Biol 21: 665–672
Google Scholar
Saito T, Yamanaka K, Okada Y (1990) Long distance movement and viral assembly of tobacco mosaic virus mutants. Virology 176: 329–336
Google Scholar
Sanders PR, Kaniewski WK, Haley L, LaVallee B, Delannay X, Tumer N (1992) Field trials of transgenic tomatoes expressing the tobacco mosaic or tomato mosaic virus coat proteins. Phytopathology 82: 683–690
Google Scholar
Sandler SJ, Stayton M, Townsend JA, Ralston ML, Bedbrook JR, Dunsmuir P (1988) Inhibition of gene expression in transformed plants by antisense RNA. Plant Mol Biol 11:301–310
Google Scholar
Sanford JV, Johnston SA (1985) The concept of pathogen derived resistance: Deriving resistance genes from the parasites own genome. J Theor Biol 113: 395–405
Google Scholar
Sarkar S, Smitamana P (1981) A proteinless mutant of tobacco mosaic virus: evidence against the role of a viral coat protein for interference. Mol Gen Genet 184: 158–159
Google Scholar
Sherwood JL, Fulton RW (1982) The specific involvement of coat protein in tobacco mosaic virus cross protection. Virology 119:150–158
Google Scholar
Sherwood JL (1985) The association of “pathogenesis-related” proteins with viral induced necrosis in Nicotiana sylvestris. J Phytopathol 112: 48–55
Google Scholar
Stark DM, Beachy RM (1989) Protection against potyvirus infection in transgenic plants: evidence for broad spectrum resistance. Bio/Technology 7: 1257–1262
Google Scholar
Tumer NE, O'Connell KM, Nelson RS, Sander PR, Beachy RN, Fraley RT, Shah DM (1987) Expression of alfalfa mosaic virus coat protein gene confers cross protection in transgenic tobacco and tomato plants. EMBO J 6: 1181–1188
Google Scholar
Tumer NE, Kaniewski W, Haley L, Gehrke L, Lodge JK, Sanders P (1991) The second amino acid of alfalfa mosaic virus coat protein is critical for coat protein-mediated protection. Proc Natl Acad Sci USA 88: 2331–2335
Google Scholar
van der Vlugt RAA, Ruiter RK, Goldbach R (1992) Evidence for sense RNA-mediated protection to PVYN in tobacco plants transformed with the viral coat protein cistron. Plant Mol Biol 20: 631–639
Google Scholar
van der Wilk F, Willink DP-L, Huisman MJ, Huttinga H, Goldbach R (1991) Expression of the potato leafroll luteovirus coat protein gene in transgenic potato plants inhibits viral infection. Plant Mol Biol 17: 431–439
Google Scholar
van Dun CMP, Bol JF, Van Vloting-Doting L (1987) Expression of alfalfa mosaic virus and tobacco rattle virus coat protein genes in transgenic tobacco plants. Virology 159: 299–305
Google Scholar
van Dun CMP, Overduin B, van Vloting-Doting L, Bol JF (1988) Transgenic tobacco expressing tobacco streak virus or mutated alfalfa mosaic virus coat protein gene does not cross-protect against alfalfa mosaic virus infection. Virology 164: 383–389
Google Scholar
van Loon LC (1985) Pathogenesis-related protein. Plant Mol Biol 4: 11–116
Google Scholar
Wen F, Lister RM, Fattouh FA (1991) Cross-protection among strains of barley yellow dwarf virus. J Gen Virol 72: 791–799
Google Scholar
Wilson TMA (1984) Cotranslational disassembly of tobacco mosaic virus in vitro. Virology 137: 255–265
Google Scholar
Wilson TMA (1985) Nucleocapsid disassembly and early gene expression by positive strand RNA viruses. J Gen Virol 66: 1201–1207
Google Scholar
Wilson TMA, Watkins PAC (1986) Influence of exogenous viral coat protein on the contranslational disassembly of tobacco mosaic virus (TMV) particles in vitro. Virology 149: 132–135
Google Scholar
Wisniewski LA, Powell PA, Nelson RS, Beachy RN (1990) Local and systemic spread of tobacco mosaic virus in transgenic tobacco. Plant Cell 2: 559–567
Google Scholar
Wu X, Beachy RN, Wilson TMA, Shaw JG (1990) Inhibition of uncoating of tobacco mosaic virus particles in protoplasts from transgenic plants that express the viral coat protein gene. Virology 179: 893–895
Google Scholar
Zaitlin M (1976) More understanding is needed. Phytopathology 66: 382–383
Google Scholar
Zinnen TM, Fulton RW (1986) Cross-protection between sunn-hemp mosaic and tobacco mosaic viruses. J Gen Virol 67: 1679–1697
Google Scholar