- Akinsanya, M. A., Goh, J. K., Lim, S. P. & Ting, A. S. (2015). Metagenomics study of endophytic bacteria in Aloe vera using next-generation technology. Genom Data, 6, 159-163.
- Alhudaib, K., Arocha, Y., Wilson, M. and Jones, P. (2009). Molecular identification, potential vectors and alternative hosts of the phytoplasma associated with a lime decline disease in Saudi Arabia. Crop Protection, 28, 13-18.
- Ann, P. J., Ko, W. H. & Hong J. S. (2004). Interaction between Likubin bacterium and Phytophthora parasitica in citrus hosts. European Journal of Plant Pathology, 110, 1-6.
- BaniHashemian, S. M., Serra, P., Barbosa, C., Juárez, J., Aleza, P., Corvera, J., Lluch, A., Pina, J. & Duran-Vila, N. (2009). Effect of a field-source mixture of citrus viroids on the performance of 'Nules' clementine and 'Navelina' sweet orange trees grafted on Carrizo citrange. Plant Disease, 93, 699-707.
- Barthe, G. A., Ceccardi, T. L., Manjunath, K. L. & Derrick, K. S. (1998). Citrus psorosis virus: nucleotide sequencing of the coat protein gene and detection by hybridization and RT–PCR. Journal of General Virology, 79, 1531-1537.
- Bassanezi, R. B., Bergamin Filho, A., Amorim, L., Gimenes- Fernandes, N., Gottwald, T. R. & Bové, J. M. (2003). Spatial and temporal analyses of citrus sudden death as a tool to generate hypotheses concerning its etiology. Phytopathology, 93, 502-512.
- Ebadzadeh, H. R., Ahmadi, K., Mohammadnia Afroozi, S., Abbas Taghani, R., Abbasi, M. & Yari, S. 2017. Agricultural statistics 1395. (Vol. 3) Ministry of Jihad -e- Agriculture. Tehran, Iran.
- Francis, M. I., Szychowski, J. A. & Semancik, J. S. (1995). Structural sites specific to citrus viroid groups. Journal of General Virology, 76, 1081-1089.
- Golein, B., Bigonah, M., Azadvar, M. & Golmohammadi, M. (2012). Analysis of genetic relationship between ‘Bakraee’ (Citrus sp.) and some known Citrus genotypes through SSR and PCR-RFLP markers. Scientia Horticulturae, 148, 147-153.
- Graham, J. H. (1995). Root regeneration and tolerance of citrus rootstocks to root rot caused by Phytophthora nicotianae. Phytopathology, 85, 111-117.
- Graham, J. H., Johnson, E. G., Gottwald, T. R. & Irey, M. S. (2013). Presymptomatic fibrous root decline in citrus trees caused by huanglongbing and potential interaction with Phytophthora spp. Plant Disease, 97, 1195-1199.
- Graham, J. H., Timmer, L. W. & Dewdney, M. M. (2011). Florida citrus pest management guide: Phytophthora foot rot and root rot. University of Florida, IFAS Extension.
- Gundersen, D. E. & Lee, I. M. (1996). Ultrasensitive detection of phytoplasmas by nested PCR assays using two universal primer pairs. Phytopathology Mediterranean, 35, 144-151.
- Hocquellet, A., Bove, J. M. & Garnier, M. (1999). Isolation of DNA from the uncultured Candidatus Liberobacter species associated with citrus huanglongbing by RAPD. Current Microbiology, 38, 176-182.
- Hoffman, M. T., Doud, M. S., Williams, L., Zhang, M.-Q., Ding, F., Stover, E., Hall, D., Zhang, S., Jones, L., Gooch, M., Fleites, L., Dixon, W., Gabriel, D. & Duan, Y. P. (2013). Heat treatment eliminates ‘Candidatus Liberibacter asiaticus’ from infected citrus trees under controlled conditions. Phytopathology, 13, 15-22.
- Ippolito, A., Decicco, V., Cicco, E. & Salerno, M. (1990). Role of Phytophthora spp. in citrus decline in Apulia and Basilicata, Italy. Bulletin EPPO, 20 (1), 91-94.
- Izadpanah, K., Shafiee, V. & Pakniat, A. (2002). The status of Citrus tristeza virus in the Fars and Bushehr provinces of Iran. Fifteenth International Organization of Citrus Virologists Conference Proceedings.332-334.
- Jagoueix, S., Bove, J. M. & Garnier, M. (1996). PCR detection of two Candidatus Liberobacter species associated with greening disease of citrus. Molecular Cell Probes, 10, 1915-1917.
- Jordan, R. L. & Dodds, J. A. (1984). Double-stranded RNA in detection of diseases of known and unproven viral etiology. Acta Horticulturae, 164, 101-108.
- Le Roux, H. F., Pretorius, M. C. & Huisman, L. (2000). Citrus nematode IPM in southern Africa. Proceeding of the International Society of Citriculture, 2, 823-827.
- Levy, L. & Hadidi, A. (1993). Direct nucleotide sequencing of PCR amplified DNAs of the closely related viroids IIa and IIb (Cachexia). In: Proceeding of 12th Conference of International Organization of Citrus Virologists, 180-186.
- Louzada, E. S., Vazquez, O. E., Braswell, W. E., Yanev, G., Devanaboina, M. & Kunta, M. (2016). Distribution of 'Candidatus Liberibacter asiaticus' above and below ground in Texas citrus. Phytopathology, 106 (7), 702.
- Maccheroni, W. 1., Alegria, M.C., Greggio, C. C, Piazza, J.P., Kamla, R. F., Zacharias, P. R., Bar-Joseph, M., Kitajima, E. W., Assumpção, L. C., Camarotte, G., Cardozo. J., Casagrande, E. C., Ferrari, F., Franco, S. F., Giachetto, P. F., Girasol, A., Jordão, H. J., Silva, V. H., Souza, L. C., Aguilar-Vildoso, C. I., Zanca, A. S., Arruda, P., Kitajima, J. P., Reinach, F. C., Ferro, J. A. & da Silva A. C. (2005). Identification and genomic characterization of a new virus (Tymoviridae family) associated with citrus sudden death disease. Journal of Virology, 79, 3028-3037.
- Meena, A. K., Dutta, F., Marak, M. Ch. & Meena, R. K. (2018). Citrus decline. International Journal of Current Microbiology and Applied Sciences, 7(4), 2807-2815.
- Mori, H., Maruyama, F., kato, H., Toyoda, A., Dozono, A., Ohtsubo, y., Nagata,Y., Fjiyama, A., Tsuda, M. & Kurokawa, K. (2014). Design and experimental application of a novel non-degenerate universal primer set that amplifies prokaryotic 16S rRNA genes with a low possibility to amplify eukaryotic rRNA genes. DNA Research, 21, 217-227.
- Muyzer, G., Waal, E. C. D. & Uitierlinden, A. G. (1993). Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA. Applied and Environmental Microbiology, 695.
- Najafinia, M. & Azadvar, M. (2016). Citrus sudden decline disease in Iran. Indian Phytopathology, 69(4s), 41-43.
- Palacio, A. & Duran-Vila, N. (1999). Single-strand conformation polymorphism (SSCP) analysis as a tool for viroid characterization. Journal of Virological Methods, 77, 27-36.
- Pallas, V., Sanchez-Navarro, J. A., Mas, P., Cañizares, M. C., Aparicio, F. & Marcos, J. F. (1998). Molecular diagnostic techniques and their potential role in stone fruit certification schemes. Options Méditerranéennes, 19, 191-208.
- Philis, J. (1989). Yield loss assessment caused by the citrus nematode on Valencia orange in Cyprus. Nematologia Mediterranea, 17, 5-6.
- Roman, M. P. M., Cambra, J., Juárez, P., Moreno, N., Duran-Vila, F. A. O., Tanaka, E., Alves, E. W., Kitajima, P. T., Yamamoto, B., Bassanezi, D. C. J. Jr. Teixeira, A. J., Ayres, N., Gimenes-Fernandes, F., Rabenstein, L. F. & Bove, J. M. (2004). Sudden death of citrus: a graft-transmissible bud union disease. Plant Disease, 88, 453-467.
- Safdar, A., Javed, N., Khan S. A., Khan, H. U., Rehman, A. & Haq, I. U. (2010). Survey and investigation of different citrus growing areas for citrus sudden death syndrome. Pakestanian Jornal of Phytopathology, 22, 71-78.
- Schneider, B., Seemüller, E., Smart, C. D. & Kirkpatrick, B. C. (1995). Phylogenetic classification of plant pathogenic mycoplasmalike organisms or phytoplasmas. In: Razin, R. & Tully, J. G., (Eds.). Molecular and Diagnostic Procedures in Mycoplasmology, Vol. I., (pp. 369-380.) Academic Press, San Diego, CA, USA.
- Seriwastava, A. K. & Singh, S. (2009). Citrus decline: soil fertility and plant nutrition. Journal of Plant Nutrition, 32, 197-245.
- Spina, S., Coco, V., Gentile, A., Catara, A. & Cirvilleri, G. (2008). Association of Fusarium solani with rolabc and wild type Troyer citrange. Journal of Plant Pathology, 90 (3), 479-486.
- Tanha Maafi, Z. & Damadzadeh, M. (2008). Incidence and control of the citrus nematode, Tylenchulus semipenetrans Cobb, in the north of Iran. Nematology, 10, 113-122.
- Valverde, R. A. (1990). Analysis of double-stranded RNA for plant virus diagnosis. Plant Disease, 74, 255-258.
- Whitehead, A. G. & Hemming, J. R. (1965). A comparison of some quantitative methods of extracting some small vermiform nematodes from soil. Annals of Applied Biology, 55, 22-38.
- Wu J., Johnson, E. G., Bright, D. B., Gerberich, K. M. & Graham J. H. (2017). Interaction between Phytophthora nicotianae and Candidatus Liberibacter asiaticus damage to citrus fibrous roots. Journal of Citrus Pathology, 4(1), 1-7.
- Yokomi, R. K., Mello, A. F. S., Saponari, M. & Fletcher, J. (2008). Polymerase chain reaction based detection of Spiroplasma citri associated with citrus stubborn disease. Plant Disease, 92, 253-260.
- Yuan, X., Morano, L., Bromley, R., Spring-Pearson, S., Stouthamer, R. & Nunney, L. (2010). Multilocus sequence typing of Xylella fastidiosa causing Pierce’s disease and oleander leaf scorch in the United States. Phytopathology, 100, 601-611.
- Zhang, Y. P., Uyemoto, J. K. & Kirkpatrick, B. C. (1998). A small-scale procedure for extracting nucleic acids from woody plants infected with various phytopathogens for PCR assay. Journal of Virological Methods, 71, 45-50.
|