References: Aspiviridae


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Danós, E. (1990).  La psorosis de los cítricos: la epidemia en curso en Argentina y el desafio de su control. Revista de Investigaciones Agropecuarias 22, 265-277

Derrick, K. S., Brlansky, R. H., Lee, R. F., Timmer, L. W., Garnsey, S. M. & Nguyen, T. K. (1988).  Two components associated with the citrus ringspot virus. In Proceedings of the 10th Conference of the International Organization of Citrus Virologists, pp. 340-342. Edited by L. W. Timmer, S. M. Garnsey & L. Navarro. Riverside, California, USA. 

Garcia, M. L., Dal Bo, E., Grau, O. & Milne, R. G. (1994).  The closely related citrus ringspot and citrus psorosis viruses have particles of novel filamentous morphology. J Gen Virol 75, 3585-3590. [PubMed]

Garcia, M. L., Derrick, K. S. & Grau, O. (1993).  Citrus psorosis associated virus and citrus ringspot virus belong to a new virus group. In Proceedings of 12th Conference of the International Organization of Citrus Virologists, pp. 430-431. Edited by P. Moreno, J. V. da Graça & L. W. Timmer. New Delhi, India: IOCV. 

Garcia, M. L., Grau, O. & Sarachu, A. N. (1991).  Citrus psorosis is probably caused by a bipartite ssRNA virus. Res Virol 142, 303-311. [PubMed]

Hiraguri, A., Ueki, S., Kondo, H., Nomiyama, K., Shimizu, T., Ichiki-Uehara, T., Omura, T., Sasaki, N., Nyunoya, H. & Sasaya, T. (2013).  Identification of a movement protein of Mirafiori lettuce big-vein ophiovirus. Journal of General Virology 94, 1145-1150. [PubMed]

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Jeong, M. I., Choi, Y. J., Joa, J. H., Choi, K. S. & Chung, B. N. (2014).  First Report of Freesia sneak virus in Commercial Freesia hybrida Cultivars in Korea. Plant Disease 98, 162

Lot, H., Campbell, R. N., Souche, S., Milne, R. G. & Roggero, P. (2002).  Transmission by Olpidium brassicae of Mirafiori lettuce virus and Lettuce big-vein virus, and Their Roles in Lettuce Big-Vein Etiology. Phytopathology 92, 288-293. [PubMed]

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Milne, R. G., Djelouah, K., Garcia, L. M., Dal Bo, E. & Grau, O. (1996).  Structure of citrus- psorosis-associated virus particles: Implications for diagnosis and taxonomy. In 13th Conference of the International Organization of Citrus Virologists, pp. 189-197. Edited by J. V. Da Graça, P. Moreno & R. K. Yokomi. Fuzhou, Fujian, China: IOCV. 

Morelli, M., De Stradis, A., Minafra, A., Saldarelli, P. & Martelli, G. P. (2015).  Mixed infection by Eggplant mottled dwarf virus and an ophiovirus species in Japanese pittosporum. Journal of Plant Pathology 97, 548

Morikawa, T., Nomura, Y., Yamamoto, T. & Natsuaki, T. (1995).  Partial characterization of virus-like particles associated with tulip mild mottle mosaic. . Annals of the Phytopathological Society of Japan 61, 578-581

Naum-Ongania, G., Gago-Zachert, S., Peña, E., Grau, O. & Garcia, M. L. (2003).  Citrus psorosis virus RNA 1 is of negative polarity and potentially encodes in its complementary strand a 24K protein of unknown function and 280K putative RNA dependent RNA polymerase. Virus Research 96, 49-61. [PubMed]

Navarro, J. A., Botella, F., Marhuenda, A., Sastre, P., Sánchez-Pina, M. A. & Pallas, V. (2005).  Identification and partial characterisation of Lettuce big-vein associated virus and Mirafiori lettuce big-vein virus in common weeds found amongst Spanish lettuce crops and their role in lettuce big-vein disease transmission. European journal of plant pathology 113, 25-34

Navarro, J. A., Botella, F., Maruhenda, A., Sastre, P., Sánchez-Pina, M. A. & Pallas, V. (2004).  Comparative Infection Progress Analysis of Lettuce big-vein virus and Mirafiori lettuce virus in Lettuce Crops by Developed Molecular Diagnosis Techniques. Phytopathology 94, 470-477. [PubMed]

NavasCastillo, J., Moreno, P., Cambra, M. & Derrick, K. (1993).  Partial purification of a virus associated with a Spanish isolate of citrus ringspot. Plant Pathology 42, 339-346

Osaki, H., Sasaki, A., Nomiyama, K. & Tomioka, K. (2016).  Multiple virus infection in a single strain of Fusarium poae shown by deep sequencing. Virus Genes 52, 835-847. [PubMed]

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Pearson, M. N., Cohen, D., Cowell, S. J., Jones, D., Blouin, A., Lebas, B. S. M., Shiller, J. B. & Clover, G. R. G. (2009).  A survey of viruses of flower bulbs in New Zealand. Australasian Plant Pathology 38, 305-309

Peña, E. J., Robles Luna, G., Zanek, M. C., Borniego, M. B., Reyes, C. A., Heinlein, M. & Garcia, M. L. (2012).  Citrus psorosis and Mirafiori lettuce big-vein ophiovirus coat proteins localize to the cytoplasm and self interact in vivo. Virus Research 170, 34-43. [PubMed]

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Reyes, C. A., Ocolotobiche, E. E., Marmisolle, F. E., Robles Luna, G., Borniego, M. B., Bazzini, A. A., Asurmendi, S. & Garcia, M. L. (2016).  Citrus psorosis virus 24K protein interacts with citrus miRNA precursors, affects their processing and subsequent miRNA accumulation and target expression. Molecular Plant Pathology On-Line 17, 317-329. [PubMed]

Robles Luna, G., Peña, E. J., Borniego, M. B., Heinlein, M. & Garcia, M. L. (2013).  Ophioviruses CPsV and MiLBVV movement protein is encoded in RNA 2 and interacts with the coat protein. Virology 441, 152-161. [PubMed]

Robles Luna, G., Reyes, C. A., Peña, E. J., Ocolotobiche, E., Baeza, C., Borniego, M. B., Kormelink, R. & Garcia, M. L. (2017).  Identification and characterization of two RNA silencing suppressors encoded by ophioviruses. Virus Research 235, 96-105

Roggero, P., Ciuffo, M., Vaira, A. M., Accotto, G. P., Masenga, V. & Milne, R. G. (2000).  An Ophiovirus isolated from lettuce with big-vein symptoms. Archives of Virology 145, 2629-2642. [PubMed]

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Sánchez de la Torre, E., Riva, O., Zandomeni, R., Grau, O. & García, M. L. (1998).  The top component of citrus psorosis virus contains two ssRNAs, the smaller encodes the coat protein In Molecular Plant Pathology On-Line

Sánchez de la Torre, M. E., Lopez, C., Grau, O. & Garcia, M. L. (2002).  RNA 2 of Citrus psorosis virus is of negative polarity and has a single open reading frame in its complementary strand. Journal of General Virology 83, 1777-1781. [PubMed]

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Sippel, A. D., Bijzet, Z., Froneman, I. J., Combrink, N. K., Maritz, J. G., Hannweg, K. F., Severn-Ellis, A. A. & Manicom, B. Q. (2015).  Citrus Breeding in South Africa: the Latest Developments in the Programme Run by the ARC-Institute for Tropical and Subtropical Crops. Acta Horticulturae 1065, 397-403

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Torok, V. A. & Vetten, H. J. (2002).  Characterisation of an ophiovirus associated with lettuce ring necrosis. In Joint Conf Int Working Groups on Legume and Vegetable Viruses, p. 4. Bonn, Germany. 

Torok, V. A. & Vetten, H. J. (2003).  Identification and molecular characterisation of a new ophiovirus associated with lettuce ring necrosis disease. In Proceedings of Arbeitskreis Viruskrankheiten der Pflanzen. Heidelberg, Germany. 

Torok, V. A. & Vetten, H. J. (2010).  Ophiovirus associated with lettuce ring necrosis. In European Society for Virology Meeting, p. 282. Cernobbio, Italy. 

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Vaira, A., Kleynhans, R. & Hammond, J. (2007).  First report of Freesia sneak virus infecting Lachenalia cultivars in South Africa. Plant Disease 91, 770

Vaira, A. M., Accotto, G. P., Costantini, A. & Milne, R. G. (2003).  The partial sequence of RNA 1 of the ophiovirus Ranunculus white mottle virus indicates its relationship to rhabdoviruses and provides candidate primers for an ophiovirus-specific RT-PCR test. Arch Virol 148, 1037-1050. [PubMed]

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Vaira, A. M., Lisa, V., Accotto, G. P., Borghi, V., Masenga, V., Luisoni, E. & Milne, R. G. (1996).  A new virus isolated from Ranunculus hyb.  with particles resembling supercoiled filamentous nucleocapsids. Acta Horticulturae 432, 36-43

Vaira, A. M., Lisa, V., Costantini, A., Masenga, V., Rapetti, S. & Milne, R. G. (2006).  Ophioviruses infecting ornamentals and a probable new species associated with a severe disease in Freesia. Acta Horticulturae 722, 191-200

Vaira, A. M., Milne, R. G., Accotto, G. P., Luisoni, E., Masenga, V. & Lisa, V. (1997).  Partial characterization of a new virus from ranunculus with a divided RNA genome and circular supercoiled thread-like particles. Archives of Virology 142, 2131-2146. [PubMed]

van der Wilk, F., Dullemans, A. M., Verbeek, M. & van den Heuvel, J. F. (2002).  Nucleotide sequence and genomic organization of an ophiovirus associated with lettuce big-vein disease. J Gen Virol 83, 2869-2877. [PubMed]

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