Meng B, Johnson R, Peressini S, et al. Rupestris stem pitting associated virus-1 is consistently detected in grapevines that are infected with rupestris stem pitting. European Journal of Plant Pathology, 1999, 105: 191-199
[2]
Walter M H, Cameron H R. Double-stranded RNA isolated from grapevines affected by rupestris stem pitting disease. American Journal of Enology and Viticulture, 1991, 42(3): 175-179
[3]
Meng B, Pang S Z, Forsline P L, et al. Nucleotide sequence and genome structure of Grapevine rupestris stem pitting associated virus-1 reveal similarities to apple stem pitting virus. Journal of General Virology, 1998, 79(8): 2059-2069
[4]
Zhang Y P, Uyemoto J K, Golino D A, et al. Nucleotide sequence and RT-PCR detection of a virus associated with grapevine rupestris stem-pitting disease. Phytopathology, 1998, 88: 1231-1237
[5]
Martelli G P, Jelkmann W. Foveavirus, a new plant virus genus. Archives of Virology, 1998, 143: 1245-1249
[6]
Meng B, Li C, Wang W, et al. Complete genome sequences of two new variants of Grapevine rupestris stem pitting-associated virus and comparative analyses. Journal of General Virology, 2005, 86: 1555-1560
[7]
Lima M F, Alkowhni R, Uyemoto J K, et al. Molecular analysis of a California strain of Rupestris stem pitting-associated virus isolated from declining Syrah grapevines. Archives of Virology, 2006, 151: 1889-1894
[8]
Lima M F, Alkowni R, Uyemoto J K, et al. Genomic study and detection of a new variant of Grapevine rupestris stem pitting associated virus in declining California Pinot noir grapevines. Journal of Plant Pathology, 2009, 91(1): 155-162
[9]
Goszczynski D E. Rugose wood-associated viruses do not appear to be involved in Shiraz (Syrah)decline in South Africa. Archives of Virology, 2010, 155: 1463-1469
[10]
Morelli M, Minafra A, Boscia D, et al. Complete nucleotide sequence of a new variant of Grapevine rupestris stem pitting-associated virus from southern Italy. Archives of Virology, 2011, 156(3): 543-546
[11]
Terlizzi F, Li C, Ratti C, et al. Detection of multiple sequence variants of Grapevine rupestris stem pitting-associated virus using primers targeting the polymerase domain and partial genome sequencing of a novel variant. Annals of Applied Biology, 2011, 159(3): 478-490
[12]
Meng B Z, Venkataraman S, Li C, et al. Construction and biological activities of the first infectious cDNA clones of the genus Foveavirus. Virology, 2013, 435: 453-462
[13]
Li Xiping, Niu Jianxin, zhang Qiang, et al. Detection of grapevine stem pitting virus with RT-PCR method. Journal of Fruit Science, 2005, 22(6): 715-716 (in Chinese) [李西平, 牛建新, 张强, 等. 葡萄茎痘病毒病的RT-PCR检测. 果树学报, 2005, 22(6): 715-716]
[14]
Dong Yafeng,Zhang Zunping,Liu Fengzhi,et al. Detection of Grapevine rupestris stem pitting associated virus by RT-PCR method. Journal of Fruit Science, 2007, 24(5):705-708 (in Chinese) [董雅凤, 张尊平, 刘凤之, 等. 沙地葡萄茎痘相关病毒RT-PCR检测. 果树学报, 2007, 24(5): 705-708]
[15]
Niu Jianxin, Li Xiping, Zhang Qiang, et al. Studies on cDNA probe detection technology of grapevine rupestris stem pitting associated virus. Acta Agriculturae Boreali-occidentalis Sinica, 2007, 16(3): 239-243 (in Chinese) [牛建新, 李西平, 张强, 等. 葡萄茎痘伴随病毒cDNA探针检测技术研究. 西北农业学报, 2007, 16(3): 239-243]
[16]
Li Z, Du J, Zhang J, et al. Synthesis of single crystal BaMoO4 nanofibers in CTAB reverse microemulsions. Materials Letters, 2005, 59(1): 64-68
[17]
Astruc N, Marcos J F, Macquaire G, et al. Studies on the diagnosis of Hop stunt viroid in fruit trees: identification of new hosts and application of a nucleic acid extraction procedure based on non-organic solvents. European Journal of Plant Pathology, 1996, 102(9): 837-846
[18]
Foissac X, Svanella-Dumas L, Dulucq M J, et al. Polyvalent detection of fruit tree tricho, capillo and foveaviruses by nested RT-PCR using degenerated and inosine containing primers (PDO RT-PCR). Acta Horticulturae, 2001, 550: 37-43
[19]
Nolasco G, Santos C, Petrovic N, et al. Rupestris stem pitting associated virus isolates are composed by mixtures of genomic variants which share a highly conserved coat protein. Archives of Virology, 2006, 151 (1): 83-96
[20]
Terlizzi F, Ratti C, Filippini G, et al. Detection and molecular characterization of Italian Grapevine rupestris stem pitting-associated virus isolates. Plant Pathology, 2010, 59: 48-58
[21]
更多...
[22]
Alabi O J, Martin R R, Naidu R A. Sequence diversity, population genetics and potential recombination events in Grapevine rupestris stem pitting-associated virus in Pacific North-West vineyards. Journal of General Virology, 2010, 91: 265-276
[23]
Zhang Lin, Han Quanjun, Yuan Tongtong, et al. Sequence cloning and conservative analysis of the genomic RNAs of tobacco etch virus SD1 isolate. Journal of Plant Protection, 2011, 38(5): 401-407 (in Chinese) [张林, 韩全军, 袁彤彤, 等. 烟草蚀纹病毒山东分离物全基因组序列的克隆和保守性分析. 植物保护学报, 2011, 38(5): 401-407]
[24]
Zhang Yongjiang, Li Mingfu, Xiang Ning, et al. Identification and the analysis on characterization of the 3\' terminal sequences of the genome of Zucchini yellow mosaic virus from Beijing. Journal of Plant Protection, 2006,33(1):32-36 (in Chinese) [张永江, 李明福, 相宁, 等. 小西葫芦黄花叶病毒北京分离物的鉴定及其基因组3\'端特性分析. 植物保护学报, 2006, 33(1): 32-36]
[25]
Minafra A, Casati P, Elicio V, et al. Serological detection of Grapevine rupestris stem pitting-associated virus (GRSPaV) by a polyclonal antiserum to recombinant virus coat protein. Vitis, 2000, 39(3): 115-118