References
- A
li , A., Hussian , A.,and Ahmad , M. (2013). Occurrence and molecular characterization of cucumber green mottle mosaic virus in cucurbit crops of KPK, Pakistan. Brazilian Journal of Microbiology, 45(4), 1247–1253. - D
a Silva , J. A. T.,and Kulus , D.(2014) . Chrysanthemum biotechnology: Discoveries from the recent literature. Folia Horticulturae, 26(2), 67–77. - G
uan , Z., Wu , D., Song , A., Chen , F., Chen , S.,and Fang , W. (2017). A highly sensitive method for the detection of chrysanthemum virus B. Electronic Journal of Biotechnology, 26, 64–68. - H
ollings , M. (1957). Investigation of chrysanthemum viruses II. virus B (mild mosaic) and chrysanthemum latent virus. Annals of Applied Biology, 45, 589–602. - K
ondo , T., Yamashita , K.,and Sugiyama , S. (2011). First report of impatiens necrotic spot virus infecting chrysanthemum (Chrysanthemum morifolium) in Japan. Journal of General Plant Pathology, 77, 263–265. - K
umar , S., Li , G., Stecher , M., Knyaz , C.,and Tamura , K. (2018). MEGA X: Molecular evolutionary genetics analysis across computing platforms. Molecular Biology and Evolution, 35, 1547–1549. - L
in , M. J., Chang , C. A., Chen , C. C.,and Cheng , Y. H. (2005). Occurrence of chrysanthemum virus B in Taiwan and preparation of its antibody against coat protein expressed in bacteria. Plant Pathology Bulletin, 14, 191–202. - L
iu , X. L., Zhao , X. T., Muhammad , I., Ge , B. B.,and Hong , B. (2014). Multiplex reverse transcription loop-mediated isothermal amplification for the simultaneous detection of CVB and CSVd in chrysanthemum. Journal of Virological Methods, 210, 26–31. - M
artelik , J.,and Mokra , V. (1998). Tomato spotted wilt virus in ornamental plants, vegetables and weeds in the Czech Republic. Acta Virologica, 42, 347–351. - M
egan , F. H., Giles , R. J., Moran , J. R.,and Hepworth , G. (2001). The incidence of chrysanthemum stunt viroid, chrysanthemum B carlavirus, tomato aspermy cucumovirus and tomato spotted wilt tospovirus in Australian chrysanthemum crops. Plant Pathology, 25, 174–178. - M
uhire , B. M., Varsani , A.,and Martin , D. P. (2014). SDT: A virus classification tool based on pairwise sequence alignment and identity calculation. PLoS ONE, 9(9), e108277, doi: 10.1371/journal.pone.0108277. - N
iu , E. B., Chen , L. J.,and Niu , Y. B. (2015). First report of zucchini yellow mosaic virus in chrysanthemum. Plant Disease, 99(9), 1289. - N
otomi , T., Okayama , H., Masubuchi , H., Yonekawa , T., Watanabe , K., Amino , N.,and Hase , T. (2000). Loop-mediated isothermal amplification of DNA. Nucleic Acids Research, 28(12), e63, doi: 10.1093/nar/28.12.e63. - O’
reilly , D., Thomas , C. J.,and Coutts , R. H. A. (1991). Tomato aspermy virus has an evolutionary relationship with other tripartite RNA viruses. Journal of General Virology, 72, 1–7. - O
hkawa , A., Suehiro , N. I., Okuda , S.,and Natsuaki , T. (2008). Construction of an infectious full-length cDNA clone of chrysanthemum virus B. Journal of General Plant Pathology, 74, 434–437. - O
hkawa , A., Yamada , M., Sayama , H., Sugiyama , N., Okuda , S.,and Natsuaki , T. (2007). Complete nucleotide sequence of a Japanese isolate of chrysanthemum virus B (genus Carlavirus). Archives of Virology, 152, 2253–2258. - P
anno , S., Matic , S., Tiberini , A., Caruso , A. G., Bella , P., Torta , L., Stassi , R.,and Davino , S. (2020). Loop mediated isothermal amplification: Principles and applications in plant virology. Plants (Basel), 9(4), 461, doi: 10.3390/plants9040461. - R
aizada , R. K., Srivastava , K. M., Chandra , G.,and Singh , B. P. (1989). Comparative evaluation of sero-diagnostic methods for detection of chrysanthemum virus B in chrysanthemum. Indian Journal of Experimental Biology, 27, 1094–1096. - S
ingh , L., Hallan , V., Jabeen , N., Singh , A. K., Ram , R., Martin , D. P.,and Zaidi , A. A. (2007). Coat protein gene diversity among chrysanthemum virus B isolates from India. Archives of Virology, 152(2), 405–413. - S
ingh , L., Hallan , V., Martin , D. P., Ram , R.,and Zaidi , A. A. (2012). Genomic sequence analysis of four new chrysanthemum virus B isolates: Evidence of RNA recombination. Archives of Virology, 157, 531–537. - S
ong , A., You , Y., Chen , F., Li , P., Jiang , J.,and Chen , S. (2012). A multiplex RT-PCR for rapid and simultaneous detection of viruses and viroids in chrysanthemum. Letters in Applied Microbiology, 56, 8–13. - V
erma , N., Raja , R., Hallan , V., Kumar , K.,and Zaidi , A. A. (2004). Production of cucumber mosaic virus-free chrysanthemum by meristems tip culture. Crop Protection, 23, 469–473. - V
erma , N., Sharma , A., Ram , R., Hallan , V., Zaidi , A. A.,and Garg , I. D. (2003). Detection, identification and incidence of chrysanthemum B carlavirus in chrysanthemum in India. Crop Protection, 22, 425–429. - Y
amamoto , H., Kiguchi , T.,and Ohya , T. (2001). Detection of chrysanthemum virus B by RT-PCR. Annual Report of the Society of Plant Protection of North Japan, 52, 85–86. - Z
hao , X., Liu , X., Ge , B., Li , M.,and Hong , B. (2015). A multiplex RT-PCR for simultaneous detection and identification of five viruses and two viroids infecting chrysanthemum. Archives of Virology, 160, 1145–1152.