* Lazarowitz SG, Lazdins IB (1991) Infectivity and complete nucleotide sequence of the cloned genomic components of bipartite squash leaf curl geminivirus with a broad host range phenotype. Virology 180(1), 58-69.
* Polston JE, Hiebert E, McGovern RJ, Stansly PA, Schuster DJ (1993) Host range of tomato mottle virus, a new geminivirus infecting tomato in Florida. Plant Disease 77, 1181-1184.
------- artificial host in inoculation studies.
* Brattey C, Badge JL, Burns R, Foster GD, George E, Goodfellow HA, Mulholland V, McDonald JG, Jeffries CJ (2002) Potato latent virus: A proposed new species in the genus Carlavirus. Plant Pathology 51, 495-505.
* Goth RW, Ellis PJ, de Villiers G, Goins EW, Wright NS (1999) Characteristics and distribution of potato latent carlavirus (Red LaSoda) virus in North America. Plant Disease, 83(8), 751-753.
* Zanardo LG, Silva FN, Bicalho AC, Urquiza GPC, Lima ATM, Almeida AMR, Zerbini FM, Carvalho CM (2014) Molecular and biological characterization of Cowpea mild mottle virus isolates infecting soybean in Brazil and evidence of recombination. Plant Pathology 63, 456–465.
* Matoušek J, Siglová K, Jakše J, Radišek S, Brass JRJ, Tsushima T, Guček T, Duraisamy GS, Sano T, Steger G (2017) Propagation and some physiological effects of Citrus bark cracking viroid and Apple fruit crinkle viroid in multiple infected hop (Humulus lupulus L.). Journal of Plant Physiology 213, 166-177.
* Fribourg CE, Jones RAC, Koenig R (1977) Andean potato mottle, a new member of the Cowpea mosaic virus group. Phytopathology 67, 969-974.
------- Strains B, C and H tested.
* Duffus JE, Liu HY, Wisler GC (1996) Tomato infectious chlorosis virus – a new clostero-like virus transmitted by Trialeurodes vaporariorum. European Journal of Plant Pathology 102, 219–226.
* Dombrowsky A, Sapkota R, Lachman O, Pearlsman M, Antignus Y (2013) A new aubergine disease caused by a whitefly-borne strain of Tomato mild mottle virus (TomMMoV). Plant Pathology 62(4), 750-759.
* Hiskias Y, Lesemann DE, Vetten HJ (1999) Occurrence, distribution and relative importance of viruses infecting hot pepper and tomato in the major growing areas of Ethiopia. Journal of Phytopathology 147(1), 5-11.
* Walkey DGA, Spence NJ, Clay CM, Miller A (1994) A potyvirus isolated from solanaceous hosts. Plant Pathology 43(5), 931-937.
* Singh RP (1973) Experimental host range of the potato spindle tuber 'virus'. American Potato Journal 50, 111-123.
------- Aat least 25 Nicotiana species. Absence of symptoms.
* Alvarez Quinto RA, Amao M, Muller G, Fuentes S, Grinstead S, Fuentes-Bueno I, Roenhorst A, Westenberg M, Botermans M, Kreuze J, Mollov D (2023) Evidence that an unnamed isometric virus associated with potato rugose disease in Peru is a new species of torradovirus. Phytopathology 113(9), 1716-1728. https://doi.org/10.1094/PHYTO-11-22-0449-V
* Blystad D-R, Van der Vlugt R, Alfaro-Fernández A, Carmen Córdoba M, Bese G, Hristova D, Pospieszny H, Mehle N, Ravnikar M, Tomassoli L, Varveri C, Nielsen SL (2015) Host range and symptomatology of Pepino mosaic virus strains occurring in Europe. European Journal of Plant Pathology 143, 43-56.
* Luria N, Smith E, Reingold V, Bekelman I, Lapidot M, Levin I, et al. (2017) A New Israeli Tobamovirus Isolate Infects Tomato Plants Harboring Tm-22 Resistance Genes. PLoS ONE 12(1): e0170429. https://doi.org/10.1371/journal.pone.0170429
* Li Y, Wang Y, Hu J, Xiao L, Tan G, Lan P, Liu Y, Li F (2017) The complete genome sequence, occurrence and host range of Tomato mottle mosaic virus Chinese isolate. Virology Journal 14, 15. doi: 10.1186/s12985-016-0676-2
* Sui X, Zheng Y, Li R, Padmanabhan C, Tian T, Groth-Helms D, Keinath AP, Fei Z, Wu Z, Lin KS (2017) Molecular and biological characterization of Tomato mottle mosaic virus and development of RT-PCR detection. Plant Disease 101(5), 704-711.
* Zhan BH, Cao N, Wang KN, Zhou XP (2018) Detection and characterization of an isolate of Tomato mottle mosaic virus infecting tomato in China. Journal of Integrative Agriculture 17(5), 1207-1212.
* Verbeek M, Dullemans AM, Van den Heuvel JF, Maris PC, Van der Vlugt RA (2008) Tomato marchitez virus, a new plant picorna-like virus from tomato related to tomato torrado virus. Archives of virology 153(1), 127-134.
------- inoculation studies.
* Fribourg CE, Jones RAC, Koenig R (1977) Host plant reaction, physical properties and serology of three isolates of Andean potato latent virus from Peru. Annals of Applied Biology 86, 373-380.
* Verhoeven JThJ, Roenhorst JW (2000) Herbaceous test plants for the detection of quarantine viruses of potato. EPPO Bulletin 30, 463-467.
* Fribourg CE, Jones RAC, Koenig R (1977) Host plant reaction, physical properties and serology of three isolates of Andean potato latent virus from Peru. Annals of Applied Biology 86, 373-380.
* Smith SM, Gomez DF, Beaver RA, Hulcr J, Cognato AI (2019) Reassessment of the species in the Euwallacea fornicatus (Coleoptera: Curculionidae: Scolytinae) complex after the rediscovery of the ‘lost’ type specimen. Insects 10, 261. https://doi.org/10.3390/insects10090261
* Santo GS, O'Bannon JH, Finley AM, Golden AM (1980) Occurrence and host range of a new root-knot nematode (Meloidogyne chitwoodi) in the Pacific northwest. Plant Disease 64, 951-952.
* Daughtrey ML, Jones RK, Moyer JW, Daub ME, Baker JR (1997) Tospoviruses strike the greenhouse industry: INSV has become a major pathogen on flower crops. Plant Disease 81(11), 1220-1230.
* Perry KL, Miller L, Williams L (2005) Impatiens necrotic spot virus in greenhouse-grown potatoes in New York State. Plant Disease 89 (3), p 340.
* Parrella G, Gognalons P, Gebre-Selassie K, Vovlas C, Marchoux G (2003) An update of the host range of tomato spotted wilt virus. Journal of Plant Pathology 85(4), 227-264.
------- Confirmed host.
* Souza TA, Macedo MA, Albuquerque LC (2020) Host range and natural infection of tomato chlorosis virus in weeds collected in Central Brazil. Tropical Plant Pathology 45, 84–90.
* Vončina D, Jagunić M, De Stradis A, Diaz-Lara A, Al Rwahnih M, Šćepanović M, Almeida RP (2024) New host plant species of grapevine virus A identified with vector-mediated infections. Plant Disease 108(1), 125-130.