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1999-05-01
2024-05-01
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References

  1. Ansel-McKinney P., Gehrke L. 1998; RNA determinants of a specific RNA–coat protein peptide interaction in alfalfa mosaic virus: conservation of homologous features in ilarvirus RNAs. Journal of Molecular Biology 278:767–785
    [Google Scholar]
  2. Ansel-McKinney P., Scott S. W., Swanson M., Ge X., Gehrke L. 1996; A plant viral coat protein RNA binding consensus sequence contains a crucial arginine. EMBO Journal 15:5077–5084
    [Google Scholar]
  3. Baer M., Houser F., Loesch-Fries L. S., Gehrke L. 1994; Specific RNA binding by amino-terminal peptides of alfalfa mosaic virus coat protein. EMBO Journal 13:727–735
    [Google Scholar]
  4. Barker R. F., Jarvis N. P., Thompson D. V., Loesch-Fries L. S., Hall T. C. 1983; Complete nucleotide sequence of alfalfa mosaic virus RNA3. Nucleic Acids Research 11:2881–2891
    [Google Scholar]
  5. Bol J. F. 1999; Alfalfa mosaic virus and ilarviruses (Bromoviridae). In Encyclopedia of Virology 2nd edn. Edited by Webster R. G., Granoff A. London: Academic Press; (in press)
    [Google Scholar]
  6. Bol J. F., van Vloten-Doting L., Jaspars E. M. J. 1971; A functional equivalence of top component a RNA in the initiation of infection by alfalfa mosaic virus. Virology 46:73–85
    [Google Scholar]
  7. Brigneti G., Voinnet O., Li W. X., Ji L. H., Ding S. W., Baulcombe D.C. 1998; Viral pathogenicity determinants are suppressors of transgenic silencing in Nicotiana benthamiana . EMBO Journal 17:6739–6746
    [Google Scholar]
  8. Cornelissen B. J. C., Brederode F. Th., Moorman R. J. M., Bol J. F. 1983a; Complete nucleotide sequence of alfalfa mosaic virus RNA 1. Nucleic Acids Research 11:1253–1265
    [Google Scholar]
  9. Cornelissen B. J. C., Brederode F. Th., Veeneman G. H., van Boom J. H., Bol J. F. 1983b; Complete nucleotide sequence of alfalfa mosaic virus RNA 2. Nucleic Acids Research 11:3019–3025
    [Google Scholar]
  10. De Graaff M. 1995 Alfalfa mosaic virus RNA polymerase Thesis Leiden University, The Netherlands:
    [Google Scholar]
  11. De Graaff M., Coscoy L., Jaspars E. M. J. 1993; Localization and biochemical characterization of alfalfa mosaic virus replication complexes. Virology 194:878–881
    [Google Scholar]
  12. De Graaff M., Man In’t Veld M. R., Jaspars E. M. J. 1995; In vitro evidence that the coat protein of alfalfa mosaic virus plays a direct role in regulation of plus and minus RNA synthesis: implications for the life cycle of alfalfa mosaic virus. Virology 208:583–589
    [Google Scholar]
  13. Ding S. W., Shi B. J., Li W. X., Symons R. H. 1996; An interspecies hybrid RNA virus is significantly more virulent than either parental virus. Proceedings of the National Academy of Sciences, USA 93:7470–7474
    [Google Scholar]
  14. Erny C., Schoumacher F., Jung C., Gagey M.-J., Godefroy-Colburn T., Stussi-Garaud C., Berna A. 1992; An N-proximal sequence of the alfalfa mosaic virus movement protein is necessary for association with cell walls in transgenic plants. Journal of General Virology 73:2115–2119
    [Google Scholar]
  15. Fletcher L., Corbin S., Browning K., Ravel J. 1990; The absence of a cap on β-globin mRNA and alfalfa mosaic virus RNA 4 increases the amounts of initiation factor 4F required for translation. Journal of Biological Chemistry 265:19582–19587
    [Google Scholar]
  16. Gallie D. R., Kobayashi M. 1994; The role of the 3′-untranslated region of non-polyadenylated plant viral mRNAs in regulating translational efficiency. Gene 142:159–165
    [Google Scholar]
  17. Gehrke L., Auron P. E., Quigley G. J., Rich A., Sonenberg N. 1983; 5′ -Conformation of capped alfalfa mosaic virus ribonucleic acid 4 may reflect its independence of the cap-structure or of cap-binding protein for efficient translation. Biochemistry 22:5157–5164
    [Google Scholar]
  18. Giegé R. 1996; Interplay of tRNA-like structures from plant viral RNAs with partners of the translation and replication machineries. Proceedings of the National Academy of Sciences, USA 93:12078–12081
    [Google Scholar]
  19. Godefroy-Colburn T., Thivent C., Pinck L. 1985; Translational discrimination between the four RNAs of alfalfa mosaic virus: a quantitative evaluation. European Journal of Biochemistry 147:541–548
    [Google Scholar]
  20. Gonsalves D., Fulton R. W. 1977; Activation of prunus necrotic ringspot virus and rose mosaic virus by RNA 4 components of some ilarviruses. Virology 81:398–407
    [Google Scholar]
  21. Gonsalves D., Garnsey S. M. 1975; Infectivity of heterologous RNA-protein mixtures from alfalfa mosaic, citrus leaf rugose, citrus variegation, and tobacco streak viruses. Virology 67:319–326
    [Google Scholar]
  22. Greber R. S., Klose M. J., Teakle D. S., Milne J. R. 1991a; High incidence of tobacco streak virus in tobacco and its transmission by Microcephalotrips abdominalis and pollen from Ageratum houstonianum . Plant Disease 75:450–452
    [Google Scholar]
  23. Greber R. S., Klose M. J., Milne R. J., Teakle D. S. 1991b; Transmission of prunus necrotic ringspot virus using plum pollen and thrips. Annals of Applied Biology 118:589–593
    [Google Scholar]
  24. Greber R. S., Teakle D. S., Mink G. I. 1992; Thrips facilitated transmission of prune dwarf virus and prunus necrotic ringspot virus from cherry pollen to cucumber. Plant Disease 76:1039–1041
    [Google Scholar]
  25. Grieco F., Martelli G. P., Savino V. 1995; The nucleotide sequence of RNA3 and RNA4 of olive virus 2. Journal of General Virology 76:929–937
    [Google Scholar]
  26. Grieco F., Dell’Orco M., Martelli G. P. 1996; The nucleotide sequence of RNA1 and RNA2 of olive latent virus 2 and its relationships to the family Bromoviridae . Journal of General Virology 77:2637–2644
    [Google Scholar]
  27. Halk E. L., Fulton R. W. 1978; Stabilization and particle morphology of prune dwarf virus. Virology 91:434–443
    [Google Scholar]
  28. Hann L. E., Webb A. C., Cai J.-M., Gehrke L. 1997; Identification of a competitive translation determinant in the 3′ untranslated region of alfalfa mosaic virus coat protein mRNA. Molecular and Cellular Biology 17:2005–2013
    [Google Scholar]
  29. Houser-Scott F., Baer M. L., Liem K. F., Cai J.-M., Gehrke L. 1994; Nucleotide sequence and structural determinants of specific binding of coat protein or coat protein peptides to the 3′ untranslated region of alfalfa mosaic virus RNA 4. Journal of Virology 68:2194–2205
    [Google Scholar]
  30. Houser-Scott F., Ansel-McKinney P., Cai J.-M., Gehrke L. 1997; In vitro genetic selection analysis of alfalfa mosaic virus coat protein binding to 3′-terminal AUGC repeats in the viral RNAs. Journal of Virology 71:2310–2319
    [Google Scholar]
  31. Houwing C. J., Jaspars E. M. J. 1978; Coat protein binds to the 3′ terminal part of RNA 4 of alfalfa mosaic virus. Biochemistry 17:2927–2933
    [Google Scholar]
  32. Houwing C. J., Jaspars E. M. J. 1980; Preferential binding of 3′-terminal fragments of alfalfa mosaic virus RNA to virions. Biochemistry 19:5261–5263
    [Google Scholar]
  33. Houwing C. J., Jaspars E. M. J. 1982; Protein binding sites in nucleation complexes of alfalfa mosaic virus RNA 4. Biochemistry 21:3408–3414
    [Google Scholar]
  34. Houwing C. J., Jaspars E. M. J. 1986; Coat protein blocks the in vitro transcription of the virion RNAs of alfalfa mosaic virus. FEBS Letters 209:284–288
    [Google Scholar]
  35. Houwing C. J., Jaspars E. M. J. 1993; Coat protein stimulates replication complexes of alfalfa mosaic virus to produce virion RNAs in vitro . Biochimie 75:617–622
    [Google Scholar]
  36. Houwing C. J., van de Putte P., Jaspars E. M. J. 1998; Regulation of single strand RNA synthesis of alfalfa mosaic virus in non-transgenic cowpea protoplasts by the viral coat protein. Archives of Virology 143:489–500
    [Google Scholar]
  37. Jaspars E. M. J. 1985; Interaction of alfalfa mosaic virus nucleic acid and protein. In Molecular Plant Virology pp 155–225 Edited by Davies J. W. Boca Raton: CRC Press;
    [Google Scholar]
  38. Jaspars E. M. J., Houwing C. J. 1990; The RNA polymerase from alfalfa mosaic virus from completely and incompletely infected cowpea mesophyll protoplasts. In Workshop on Genome Expression and Pathogenesis of Plant RNA Viruses p 28 Edited by Garcia-Arenal F., Palukaitis P. Madrid: Serie universitaria 253, Fundacion Juan March;
    [Google Scholar]
  39. Kasteel D. T. J., van der Wel N. N., Jansen K. A. J., Goldbach R. W., Van Lent J. W. M. 1997; Tubule-forming capacity of the movement proteins of alfalfa mosaic virus and brome mosaic virus. Journal of General Virology 78:2089–2093
    [Google Scholar]
  40. Koper-Zwarthoff E. C., Bol J. F. 1980; Nucleotide sequence of the putative recognition site for coat protein in the RNAs of alfalfa mosaic virus and tobacco streak virus. Nucleic Acids Research 8:3307–3318
    [Google Scholar]
  41. Kruseman K., Kraal B., Jaspars E. M. J., Bol J. F., Brederode F. Th., Veldstra H. 1971; Molecular weight of the coat protein of alfalfa mosaic virus. Biochemistry 10:447–455
    [Google Scholar]
  42. Kumar A., Reddy V. S., Yusibov V., Chipman P. R., Hata Y., Fita I., Fukuyama K., Rossmann M. G., Loesch-Fries L. S., Baker T. S., Johnson J. E. 1997; The structure of alfalfa mosaic virus capsid protein assembled as a T = 1 icosahedral particle at 4.0-Å resolution. Journal of Virology 71:7911–7916
    [Google Scholar]
  43. Langereis K., Neeleman L., Bol J. F. 1986; Biologically active transcripts of cloned DNA of the coat protein messenger of two plant viruses. Plant Molecular Biology 6:281–288
    [Google Scholar]
  44. Loesch-Fries L. S., Jarvis N. P., Krahn K. J., Nelson S. E., Hall T. C. 1985; expression of alfalfa mosaic virus RNA 4 cDNA transcripts in vitro and in vivo . Virology 146:177–187
    [Google Scholar]
  45. Modelska A., Dietzschold B., Sleysh N., Fu Z. F., Steplewsky K., Hooper D. C., Koprowsky H., Yusibov V. 1998; Immunization against rabies with plant derived antigen. Proceedings of the National Academy of Sciences, USA 95:2481–2485
    [Google Scholar]
  46. Nassuth A., Bol J. F. 1983; Altered balance of the synthesis of plus- and minus-strand RNAs 1 and 2 of alfalfa mosaic virus in the absence of RNA 3. Virology 125:75–84
    [Google Scholar]
  47. Neeleman L., Bol J. F. 1999; Cis-acting functions of alfalfa mosaic virus proteins involved in replication and encapsidation of viral RNA. Virology 254:324–333
    [Google Scholar]
  48. Neeleman L., Van Der Vossen E. A. G., Bol J. F. 1993; Infection of tobacco with alfalfa mosaic virus cDNAs sheds light on the early function of the coat protein. Virology 196:883–887
    [Google Scholar]
  49. Poirson A., Turner A. P., Giovane C., Berna A., Roberts K., Godefroy-Colburn T. 1993; Effect of alfalfa mosaic virus movement protein expressed in transgenic plants on the permeability of plasmodesmata. Journal of General Virology 74:2459–2461
    [Google Scholar]
  50. Pringle C. R. 1998; The universal system of virus taxonomy of the International Committee on Virus Taxonomy (ICTV), including new proposals ratified since publication of the Sixth ICTV Report in 1995. Archives of Virology 143:203–210
    [Google Scholar]
  51. Quadt R., Rosdorff H. J. M., Hunt T. W., Jaspars E. M. J. 1991; Analysis of the protein composition of alfalfa mosaic virus RNA-dependent RNA-polymerase. Virology 182:309–315
    [Google Scholar]
  52. Quigley G. J., Gehrke L., Roth D. A., Auron P. E. 1984; Computer-aided nucleic acid secondary structure modeling incorporating enzymatic digestion data. Nucleic Acids Research 12:347–366
    [Google Scholar]
  53. Reusken C. B. E. M., Bol J. F. 1996; Structural elements of the 3′-terminal coat protein binding site in alfalfa mosaic virus RNAs. Nucleic Acids Research 24:2660–2665
    [Google Scholar]
  54. Reusken C. B. E. M., Neeleman L., Jaspars E. M. J. 1994; The 3′ -untranslated region of alfalfa mosaic virus RNA 3 contains at least two independent binding sites for coat protein. Nucleic Acids Research 22:1346–1353
    [Google Scholar]
  55. Reusken C. B. E. M., Neeleman L., Brederode F. Th., Bol J. F. 1997; Mutations in coat protein binding sites of alfalfa mosaic virus RNA 3 affect subgenomic RNA 4 accumulation and encapsidation of viral RNAs. Journal of Virology 71:8385–8391
    [Google Scholar]
  56. Roosien J., Van Vloten-Doting L. 1983; A mutant of alfalfa mosaic virus with an unusual structure. Virology 126:155–167
    [Google Scholar]
  57. Ryabova L. A., Torgashov A. F., Kurnasov O. V., Bubunenko M. G., Spirin A. S. 1993; The 3′-terminal untranslated region of alfalfa mosaic virus RNA-4 facilitates the RNA entry into translation in a cell-free system. FEBS Letters 326:264–266
    [Google Scholar]
  58. Rybicki E. P. 1995 Bromoviridae. Virus Taxonomy. Sixth Report of the International Committee on Taxonomy of Viruses pp 450–457 Edited by Murphy A. F. Fauquet C. M., Bishop D. H. L., Ghabrial S. A., Jarvis A. W., Martelli G. P., Mayo M. A., Summers M. D. Vienna & New York: Springer-Verlag;
    [Google Scholar]
  59. Sánchez-Navarro J. A., Pallás V. 1997; Evolutionary relationships in the ilarviruses: nucleotide sequence of prunus necrotic ringspot virus RNA 3. Archives of Virology 142:749–763
    [Google Scholar]
  60. Sánchez-Navarro J. A., Reusken C. B. E. M., Bol J. F., Pallas V. 1997; Replication of alfalfa mosaic virus RNA 3 with movement and coat protein genes replaced by corresponding genes of prunus necrotic ringspot ilarvirus. Journal of General Virology 78:3171–3176
    [Google Scholar]
  61. Schoumacher F., Erny C., Berna A., Godefroy-Colburn T., Stussi-Garaud C. 1992a; Nucleic acid binding properties of the alfalfa mosaic virus movement protein produced in yeast. Virology 188:896–899
    [Google Scholar]
  62. Schoumacher F., Gagey M.-J., Maira M., Stussi-Garaud C., Godefroy-Colburn T. 1992b; Binding of RNA by the alfalfa mosaic virus movement protein is biphasic. FEBS Letters 308:231–234
    [Google Scholar]
  63. Schoumacher F., Giovane C., Maira M., Poirson A., Godefroy-Colburn T., Berna A. 1994; Mapping of the RNA binding domain of the alfalfa mosaic virus movement protein. Journal of General Virology 75:3199–3202
    [Google Scholar]
  64. Sdoodee R., Teakle D. S. 1987; Transmission of tobacco streak virus by Thrips tabaci: a new method of plant virus transmission. Plant Pathology 36:377–380
    [Google Scholar]
  65. Smit C. H., Roosien J., van Vloten-Doting L., Jaspars E. M. J. 1981; Evidence that alfalfa mosaic virus infection starts with three RNA-protein complexes. Virology 112:169–173
    [Google Scholar]
  66. Stussi-Garaud C., Garaud J.-C., Berna A., Godefroy-Colburn T. 1987; In situ location of an alfalfa mosaic virus nonstructural protein in plant cell walls: correlation with virus transport. Journal of General Virology 68:1179–1184
    [Google Scholar]
  67. Swanson M. M., Ansel-McKinney P., Houser-Scott F., Yusibov V., Loesch-Fries L. S., Gehrke L. 1998; Viral coat protein peptides with limited sequence homology bind similar domains of alfalfa mosaic virus and tobacco streak virus RNAs. Journal of Virology 72:3227–3234
    [Google Scholar]
  68. Taschner P. E. M., Van Der Kuyl A. C., Neeleman L., Bol J. F. 1991; Replication of an incomplete alfalfa mosaic virus genome in plants transformed with viral replicase genes. Virology 181:445–450
    [Google Scholar]
  69. Thole V., Miglino R., Bol J. F. 1998; Amino acids of alfalfa mosaic virus coat protein that direct formation of unusually long virus particles. Journal of General Virology 79:3139–3143
    [Google Scholar]
  70. Van Der Kuyl A. C., Langereis K., Houwing C. J., Jaspars E. M. J., Bol J. F. 1990; Cis-acting elements involved in replication of alfalfa mosaic virus RNAs in vitro . Virology 176:346–354
    [Google Scholar]
  71. Van Der Kuyl A. C., Neeleman L., Bol J. F. 1991a; Role of alfalfa mosaic virus coat protein in regulation of the balance between viral plus- and minus-strand RNA synthesis. Virology 185:496–499
    [Google Scholar]
  72. Van Der Kuyl A. C., Neeleman L., Bol J. F. 1991b; Complementation and recombination between alfalfa mosaic virus RNA 3 mutants in tobacco plants. Virology 183:731–738
    [Google Scholar]
  73. Van Der Vossen E. A. G., Bol J. F. 1996; Analysis of cis-acting elements in the 5′-leader sequence of alfalfa mosaic virus RNA 3. Virology 220:539–543
    [Google Scholar]
  74. Van Der Vossen E. A. G., Neeleman L., Bol J. F. 1993; Role of the 5′ leader sequence of alfalfa mosaic virus RNA 3 in replication and translation of the viral RNA. Nucleic Acids Research 6:1361–1367
    [Google Scholar]
  75. Van Der Vossen E. A. G., Neeleman L., Bol J. F. 1994; Early and late functions of alfalfa mosaic virus coat protein can be mutated separately. Virology 202:891–903
    [Google Scholar]
  76. Van Der Vossen E. A. G., Notenboom T., Bol J. F. 1995; Characterization of sequences controlling the synthesis of alfalfa mosaic virus subgenomic RNA in vivo . Virology 212:663–672
    [Google Scholar]
  77. Van Der Vossen E. A. G., Reusken C. B. E. M., Bol J. F. 1996a; Cis-preferential stimulation of alfalfa mosaic virus RNA 3 accumulation by the viral coat protein. Virology 220:163–170
    [Google Scholar]
  78. Van Der Vossen E. A. G., Neeleman L., Bol J. F. 1996b; The 5′ sequence of alfalfa mosaic virus RNA 3 is dispensable for replication and contains a determinant for symptom formation. Virology 221:271–280
    [Google Scholar]
  79. Van Der Wel N. N., Goldbach R. W., Van Lent J. W. M. 1998; The movement protein and coat protein of alfalfa mosaic virus accumulate in structurally modified plasmodesmata. Virology 244:322–329
    [Google Scholar]
  80. Van Rossum C. M. A., Garcia M. L., Bol J. F. 1996; Accumulation of alfalfa mosaic virus RNAs 1 and 2 requires the encoded proteins in cis . Journal of Virology 70:5100–5105
    [Google Scholar]
  81. Van Rossum C. M. A., Brederode F. Th., Neeleman L., Bol J. F. 1997a; Functional equivalence of common and unique sequences in the 3′ terminal untranslated regions of alfalfa mosaic virus RNAs 1, 2 and 3. Journal of Virology 71:3811–3816
    [Google Scholar]
  82. Van Rossum C. M. A., Reusken C. B. E. M., Brederode F. Th., Bol J. F. 1997b; The 3′ untranslated region of alfalfa mosaic virus RNA 3 contains a core promoter for minus-strand RNA synthesis and an enhancer element. Journal of General Virology 78:3045–3049
    [Google Scholar]
  83. Van Rossum C. M. A., Neeleman L., Bol J. F. 1997c; Comparison of the role of 5′ terminal sequences of alfalfa mosaic virus RNAs 1, 2 and 3 in viral RNA replication. Virology 235:333–341
    [Google Scholar]
  84. Van Vloten-Doting L. 1975; Coat protein is required for infectivity of tobacco streak virus: biological equivalence of the coat proteins of tobacco streak and alfalfa mosaic viruses. Virology 65:215–225
    [Google Scholar]
  85. Van Vloten-Doting L., Jaspars E. M. J. 1972; The uncoating of alfalfa mosaic virus by its own RNA. Virology 48:699–708
    [Google Scholar]
  86. Van Vloten-Doting L., Neeleman L. 1982; Translation of plant virus RNAs. In Encyclopedia of Plant Physiology (New Series) vol 14B pp 337–367 Edited by Parthier B., Boulter D. Berlin: Springer-Verlag;
    [Google Scholar]
  87. Van Vloten-Doting L., Bol J. F., Neeleman L., Van Dalen D. C. G. H. G., Hubert E., Cleuter Y. 1977; In vivo and in vitro translation of the RNAs of alfalfa mosaic virus. In Nucleic Acids and Protein Synthesis in Plants pp 387–411 Edited by Bogorad L., Weil J. H. New York: Plenum Press;
    [Google Scholar]
  88. Xin H.-W., Ji L.-H., Scott S. W., Symons R. H., Ding S.-W. 1998; Ilarviruses encode a cucumovirus-like 2b gene that is absent in other genera within the Bromoviridae . Journal of Virology 72:6956–6959
    [Google Scholar]
  89. Yusibov V. M., Loesch-Fries L. S. 1995; N-terminal basic amino acids of alfalfa mosaic virus coat protein involved in the initiation of infection. Virology 208:405–407
    [Google Scholar]
  90. Yusibov V., Loesch-Fries L. S. 1998; Functional significance of three basic N-terminal amino acids of alfalfa mosaic virus coat protein. Virology 242:1–5
    [Google Scholar]
  91. Yusibov V. M., Modelska A., Steplewski K., Agadjanyan M., Weiner D., Hooper C., Koprowski H. 1997; Antigens produced in plants by infection with chimeric plant viruses immunize against rabies virus and HIV-1. Proceedings of the National Academy of Sciences, USA 94:5784–5788
    [Google Scholar]
  92. Zeng H., Wang G., Zhang L. 1997; Alfalfa mosaic virus movement protein induces tubules in plant protoplasts. Molecular Plant – Microbe Interactions 10:1010–1014
    [Google Scholar]
  93. Zuidema D., Jaspars E. M. J. 1985; Specificity of RNA and coat protein interaction in alfalfa mosaic virus and related viruses. Virology 140:342–350
    [Google Scholar]
  94. Zuidema D., Bierhuizen M. F. A., Cornelissen B. J. C., Bol J. F., Jaspars E. M. J. 1983; Coat protein binding sites on RNA 1 of alfalfa mosaic virus. Virology 125:361–369
    [Google Scholar]
  95. Zuidema D., Cool R. H., Jaspars E. M. J. 1984; Minimum requirements for specific binding of RNA and coat protein of alfalfa mosaic virus. Virology 136:282–292
    [Google Scholar]
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