- Ahmady, k. (2018). Ministry of Agriculture jihad, Agricultural statistics, garden products, Deputy Director of Planning and Economic Information and Communication Technology Center, 3 (In Farsi).
- Balestra, G. M., & Varvaro, L. (1997). Pseudomonas syringae syringae causal agent of disease on floral buds of Actinidia deliciosa (A. Chev) Liang et Ferguson in Italy. Journal of Phytopathology, 145(8‐9), 375-378.
- Balestra, G. M., Mazzaglia, A., Quattrucci, A., Renzi, M., & Rossetti, A. (2009a). Current status of bacterial canker spread on kiwifruit in Italy. Australasian Plant Disease Notes, 4(1), 34-36.
- Balestra, G. M., Mazzaglia, A., Quattrucci, A., Renzi, M., & Rossetti, A. (2009b). Occurrence of Pseudomonas syringae actinidiae in Jin Tao kiwi plants in Italy. Phytopathologia Mediterranea, 48(2), 299-301.
- Balestra, G. M., Renzi, M., & Mazzaglia, A. (2011). First report of Pseudomonas syringae pv. actinidiae on kiwifruit plants in Spain. New Disease Reports, 24(10), 2044-0588.
- Bastas, K. K., & Karakaya, A. (2012). First report of bacterial canker of kiwifruit caused by Pseudomonas syringae actinidiae in Turkey. Plant Disease, 96(3), 452-452.
- Beiki, F., Busquets, A., Gomila, M., Rahimian, H., Lalucat, J., & García-Valdés, E. (2016). New Pseudomonas spp. are pathogenic to citrus. PLoS One, 11(2), e0148796.
- Beiki, F., Rahimian, H., Goltapeh, E. M., Shamsbakhsh, M., Barzgar, A., Bisbal, A. B., & Lalucat, J. (2012). Phenotypic and pathogenecity characteristics of the agents causing citrus blast disease in the northern provinces of Iran. Iranian Journal of Plant Protection Science, 43(2), 211-222.
- Borschinger, B., Bartoli, C., Chandeysson, C., Guilbaud, C., Parisi, L., Bourgeay, J. F., ... & Morris, C. E. (2016). A set of PCRs for rapid identification and characterization of Pseudomonas syringae Journal of Applied Microbiology, 120(3), 714-723.
- Chizari, A.H., & Abolhasani, S. (2012). Survey of Iran s comparative advantage export and prioritizing export target markets in kiwi. Agricultural Economic and Development,19(76),83-120.
- Cunty, A., F. Poliakoff, C. Rivoal, S. Cesbron, M. Fischer-Le Saux, C. Lemaire, M. A. Jacques, C. Manceau, and J. L. Vanneste. (2014). Characterisation of Pseudomonas syringae actinidiae (Psa) isolated from France and assignment of strains Psa biovar 4 to a de novo pathovar: Pseudomonas syringae pv. actinidifoliorum pv. nov. Plant Pathologi, 64, 582–596.
- Everett, K. R., & Henshall, W. R. (1994). Epidemiology and population ecology of kiwifruit blossom blight. Plant Pathology, 43(5), 824-830.
- Everett, K. R., Taylor, R. K., Romberg, M. K., Rees-George, J., Fullerton, R. A., Vanneste, J. L., & Manning, M. A. (2011). First report of Pseudomonas syringae actinidiae causing kiwifruit bacterial canker in New Zealand. Australasian Plant Disease Notes, 6(1), 67-71.
- Ferrante, P., & Scortichini, M. (2010). Molecular and phenotypic features of Pseudomonas syringae pv. actinidiae isolated during recent epidemics of bacterial canker on yellow kiwifruit (Actinidia chinensis) in central Italy. Plant Pathology, 59(5), 954-962.
- Gomila, M., Busquets, A., Mulet, M., García-Valdés, E., & Lalucat, J. (2017). Clarification of taxonomic status within the Pseudomonas syringae species group based on a phylogenomic analysis. Frontiers in Microbiology, 8, 2422.
- Gomila, M., Peña, A., Mulet, M., Lalucat, J., & García-Valdés, E. (2015). Phylogenomics and systematics in Pseudomonas. Frontiers in Microbiology
- , 6, 214.
- Guilbaud, C., Morris, C. E., Barakat, M., Ortet, P., & Berge, O. (2016). Isolation and identification of Pseudomonas syringae facilitated by a PCR targeting the whole P. syringae group. FEMS Microbiology Ecology, 92(1).
- Hirano, S. S., & Upper, C. D. (2000). Bacteria in the leaf ecosystem with emphasis on Pseudomonas syringae a pathogen, ice nucleus, and epiphyte. Microbiology and Molecular Biology Reviews, 64(3), 624-653.
- Holeva, M. C., Glynos, P. E., & Karafla, C. D. (2015). First report of bacterial canker of kiwifruit caused by Pseudomonas syringae actinidiae in Greece. Plant Disease, 99(5), 723-723.
- Hugh, R., & Leifson, E. (1953). The taxonomic significance of fermentative versus oxidative metabolism of carbohydrates by various gram negative bacteria. Journal of Bacteriology, 66(1), 24.
- Latorre, B. A., & Jones, A. L. (1979). Pseudomonas morsprunorum, the cause of bacterial canker of sour cherry in Michigan, and its epiphytic association with P. syringae. Phytopathology, 69(4), 335-339.
- Mazarei, M., & Mostofipour, P. (1994). First report of bacterial canker of kiwifruit in Iran. Plant Pathology, 43(6), 1055-1056.
- Moore, L. (2008). Diseases Caused by Pseudomonas syringae. Oregon State University, USA.
- Parkinson, N., Bryant, R., Bew, J., & Elphinstone, J. (2011). Rapid phylogenetic identification of members of the Pseudomonas syringae species complex using the rpoD Plant Pathology, 60(2), 338-344.
- Rees‐George, J., Vanneste, J. L., Cornish, D. A., Pushparajah, I. P. S., Yu, J., Templeton, M. D., & Everett, K. R. (2010). Detection of Pseudomonas syringae pv. actinidiae using polymerase chain reaction (PCR) primers based on the 16S–23S rDNA intertranscribed spacer region and comparison with PCR primers based on other gene regions. Plant Pathology, 59(3), 453-464.
- Schaad, N. W., Jones, J. B., & Chun, W. (2001). Laboratory guide for the identification of plant pathogenic bacteria (No. Ed. 3). American Phytopathological Society (APS Press).
- Scortichini, M. (1994). Occurrence of Pseudomonas syringae pv. actinidiae on kiwifruit in Italy. Plant Pathology, 43(6), 1035-1038.
- Spinelli, F., Donati, I., Vanneste, J. L., Costa, M., & Costa, G. (2010, September). Real time monitoring of the interactions between Pseudomonas syringae actinidiae and Actinidia species. In VII International Symposium on Kiwifruit 913 (pp. 461-465).
- Stefani, E., & Loreti, S. (2014). PM 7/120 (1) Pseudomonas syringae pv. actinidiae.
- Varvaro, L., Magro, P., & Mainolfi, P. (1990). Occurrence of Pseudomonas viridiflava in Actinidia deliciosa in Italy. Informatore fitopatologico, 40(6), 49-53.
- Widmer, F., Seidler, R. J., Gillevet, P. M., Watrud, L. S., & Di Giovanni, G. D. (1998). A highly selective PCR protocol for detecting 16S rRNA genes of the genus Pseudomonas (sensu stricto) in environmental samples. Applied and Environmental Microbiology, 64(7), 2545-2553.
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