Ahmed, N. E., Kanan, H. O., Sugimoto, Y., Ma, Y. Q., & Inanaga, S. (2001). Effect of imidacloprid on incidence of Tomato yellow leaf curl virus. Plant Disease, 85, 84-87.
Arli-Sokmen, M., Mennan, H., Sevik, I. M. A., & Ecevit, O. (2005). Occurrence of viruses in field-grown pepper crops and some of their reservoir weed hosts in Samsun, Turkey. Phytoparasitica, 33, 347-358.
Bezerra, I. C., de Resende, R. O., Pozzer, L., Nagata, T., Kormelink, M., & De Avila, A. C. (1999). Increase of tospoviral diversity in Brazil with the identification of two new tospovirus species, one from chrysanthemum and one from zucchini. Phytopathology, 89, 823-830.
Brunt, A. A., & Kenten, R. H. (1971). Pepper veinal mottle virus-A new member of the potato virus Y group from peppers (Capsicum annuum L. and C. frutescens L.) in Ghana. Applied Biology, 69, 235-243.
Cardenas-Conejo, Y., Arguello-Astorga, G., Poghosyan, A., Hernandez-Gonzalez, J., Lebsky, V., Holguin-Peña, J., et al. (2010). First report of Tomato yellow leaf curl virus co-infecting pepper with Tomato chino La Paz Virus in Baja California Sur, Mexico. Plant Disease, 94, 1266.
Clark, M. F., & Adams, A. N. (1977). Characteristics of the microplate method of enzyme-linked immuno sorbent assay for the detection of plant viruses. Journal of General Virology, 34, 475-483.
Converse, R. H., & Martin, R. R. (1990). ELISA methods for plant viruses. In R. Hampton, E. Ball, & S. De Boer (Eds.), Serological methods for detection and identification of viral and bacterial plant pathogens (pp. 179-196). St. Paul, MN, USA: American Phytopathological Society.
Dombrovsky, A., Glanz, E., Lachman, O., & Antignus, Y. (2010). Characterization of Pepper yellow leaf curl virus, a tentative new Polerovirus species causing a yellowing disease of pepper. Phytoparasitica, 38, 477-486.
Dossou, J., Soulé, I., & Montcho, M. (2006). Analyse économique de la production de purée de tomate à petite échelle au Bénin. Tropicultura, 24, 239-246.
Fauquet, C. M., Sawyer, S., Idris, A. M., & Brown, J. K. (2005). Sequence analysis and classification of apparent recombinant begomoviruses infecting tomato in the Nile and Mediterranean Basins. Phytopathology, 95, 549-555.
Hanssen, I. M., Lapidot, M., & Thomma, B. P. H. J. (2010). Emerging viral diseases of tomato crops. Molecular Plant Microbe Interaction, 23, 539-548.
Hiskias, Y., Lesemann, D. E., & Vetten, H. J. (1999). Occurrence, distribution and relative importance of viruses infecting hot pepper and tomato in the major growing areas of Ethiopia. Journal of Phytopathology, 147, 5-11.
Hobbs, H. A., Eastburn, D. M., D'Arcy, C. J., Kindhart, J. D., Masiunas, J. B., Voegtlin, D. J., et al. (2000). Solanaceous weeds as possible sources of Cucumber mosaic virus in southern Illinois for aphid transmission to pepper. Plant Disease, 84, 1221-1224.
Legg, J. P., & Ogwal, S. (1998). Changes in the incidence of African cassava mosaic geminivirus and the abundance of its whitefly vector along south-north transects in Uganda. Journal of Applied Entomology, 122, 169-178.
Marchoux, G., Gognalons, P., & Gebré Sélasié, K. (2008). Virus des solanacées: Du génome viral à la protection des cultures. Versailles Cedex, France: Editions Quae.
Maris, P. C., Joosten, N. N., Goldbach, R. W., & Peters, D. (2003). Restricted spread of Tomato spotted wilt virus in thrips-resistant pepper. Phytopathology, 93, 1223-1227.
Massumi, H., Shaabanian, M., Hosseini Pour, A., Heydarnejad, J., & Rahimian, H. (2009). Incidence of viruses infecting tomato and their natural hosts in the southeast and central regions of Iran. Plant Disease, 93, 67-72.
Momol, M. T., Olson, S. M., Funderburk, J. E., Stavisky, J., & Marois, J. J. (2004). Integrated management of tomato spotted wilt on field-grown tomatoes. Plant Disease, 88, 882-890.
Montasser, M. S., Tousignant, M. E., & Kaper, J. M. (1998). Viral satellite RNAs for the prevention of cucumber mosaic virus (CMV) disease in field-grown pepper and melon plants. Plant Disease, 82, 1298-1303.
Moury, B., Palloix, A., Caranta, C., Gognalons, P., Souche, S., Gebré-Selassie, K., et al. (2005). Serological, molecular, and pathotype diversity of Pepper veinal mottle virus and Chili veinal mottle virus. Phytopathology, 95, 227-232.
Papayiannis, L. C., Katis, N. I., Idris, A. M., & Brown, J. K. (2011). Identification of weed hosts of Tomato yellow leaf curl virus in Cyprus. Plant Disease, 95, 120-125.
Rodríguez-Alvarado, G., Fernandez-Pavia, S., Creamer, R., & Liddell, C. (2002). Pepper mottle virus causing disease in chile peppers in southern New Mexico. Plant Disease, 86, 603-605.
Sikora, E. J., Gudauskas, R. T., Murphy, J. F., Porch, D. W., Andrianifahanana, M., Zehnder, G. W., et al. (1998). A multivirus epidemic of tomatoes in Alabama. Plant Disease, 82, 117-120.
Stommel, J. R., Tousignant, M. E., Wai, T., Pasini, R., & Kaper, J. M. (1998). Viral satellite RNA expression in transgenic tomato confers field tolerance to cucumber mosaic virus. Plant Disease, 82, 391-396.
Tsai, W. S., Abdourhamane, I. K., & Kenyon, L. (2010). First report of Pepper veinal mottle virus associated with mosaic and mottle diseases of tomato and pepper in Mali. Plant Disease, 94, 378.