Citation: | PAN Hui, ZHAO Zhong-hao, ZHANG Song-bai, ZHANG De-yong, ZHANG Jie, LI Jun-kai, ZHENG Li-min. Preparation and Application of Polyclonal Antibodies Against Nucleocapsid Protein N and Envelope Membrane Glycoprotein Gn of Tomato Spotted Wilt Orthotospovirus[J]. Fujian Journal of Agricultural Sciences, 2018, 33(9): 963-968. doi: 10.19303/j.issn.1008-0384.2018.09.013 |
[1] |
PARRELLA G, GOGNALONS P, GEBRE-SELASSIè K, et al. An update of the host range of tomato spotted wilt virus[J]. Journal of Plant Pathology, 2003, 85(4):227-264. http://www.jstor.org/stable/41998156
|
[2] |
CHO J J, RFL M, GERMAN T L, et al. A multidisciplinary approach to management of tomato spotted wilt virus in Hawaii[J]. Plant Disease, 1989, 73(5):375-383. doi: 10.1094-PD-73-0375/
|
[3] |
SCHOLTHOF K B, ADKINS S, CZOSNEK H, et al. Top 10 plant viruses in molecular plant pathology[J]. Molecular Plant Pathology, 2011, 12(9):938-954. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=6fcee62f0c982d24b26117a9fd857d06
|
[4] |
李洁, 迟胜起, 杨勤民, 等.山东烟台地区发生番茄斑萎病毒病危害[J].植物保护, 2017, 43(1):228-232. doi: 10.3969/j.issn.0529-1542.2017.01.043
|
[5] |
张仲凯.番茄斑萎病毒属病毒粒体在寄主植物中的装配与运动机制研究[D].北京: 中国农业科学院, 2015.
|
[6] |
KING A M Q, CARSTENS E B, LEFKOWITZ E J. Ninth report of the international Committee on taxonomy of viruses[J]. Elsevier, 2011:774-796.
|
[7] |
DE H P, KORMELINK R, DE O R R, et al. Tomato spotted wilt virus L RNA eNCodes a putative RNA polymerase[J]. Journal of General Virology, 1991, 72(9):2207-2216. doi: 10.1099/0022-1317-72-9-2207
|
[8] |
VAN K I, GOLDBACH R, KORMELINK R. Purified tomato spotted wilt virus particles support both genome replication and transcription in vitro[J]. Virology, 2002, 303(2):278. http://europepmc.org/abstract/MED/12490389
|
[9] |
KORMELINK R, STORMS M, VAN L J, et al. Expression and subcellular location of the NSM protein of tomato spotted wilt virus (TSWV), a putative viral movement protein[J]. Virology, 1994, 200(1):56-65. doi: 10.1006/viro.1994.1162
|
[10] |
STORMS M M, KORMELINK R, PETERS D, et al. The nonstructural NSm protein of tomato spotted wilt virus induces tubular structures in plant and insect cells[J]. Virology, 1995, 214(2):485-493. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=4a7fe9353a0ae3c440853c1b95c1fccb
|
[11] |
LEWANDOWSKI D J, ADKINS S. The tubule-forming NSm protein from Tomato spotted wilt virus complements cell-to-cell and long-distaNCe movement of Tobacco mosaic virus hybrids[J]. Virology, 2005, 342(1):26. doi: 10.1016/j.virol.2005.06.050
|
[12] |
LI W, LEWANDOWSKI D J, HILF M E. Identification of domains of the Tomato spotted wilt virus NSm protein involved in tubule formation, movement and symptomatology[J]. Virology, 2009, 390(1):110-121. doi: 10.1016/j.virol.2009.04.027
|
[13] |
KIKKERT M, VERSCHOOR A, KORMELINK R, et al. Tomato Spotted Wilt Virus Glycoproteins Exhibit Trafficking and Localization Signals That Are FuNCtional, in Mammalian Cells[J]. Journal of Virology, 2001, 75(2):1004-1012. http://d.old.wanfangdata.com.cn/OAPaper/oai_pubmedcentral.nih.gov_113997
|
[14] |
SIN S H, MCNULTY B C, KENNEDY G G, et al. Viral genetic determinants for thrips transmission of Tomato spotted wilt virus[J]. Proceedings of the National Academy of ScieNCes of the United States of America, 2005, 102(14):5168. doi: 10.1073/pnas.0407354102
|
[15] |
TAKEDA A, SUGIYAMA K, NAGANO H, et al. Identification of a novel RNA sileNCing suppressor, NSs protein of Tomato spotted wilt virus[J]. Febs Letters, 2002, 532(1-2):75. doi: 10.1016-S0014-5793(02)03632-3/
|
[16] |
BUCHER E, SIJEN T, HAAN P D, et al. Negative-Strand Tospoviruses and Tenuiviruses Carry a Gene for a Suppressor of Gene SileNCing at Analogous Genomic Positions[J]. Journal of Virology, 2003, 77(2):1329. doi: 10.1128-JVI.77.2.1329-1336.2003/
|
[17] |
DE H P, WAGEMAKERS L, PETERS D, et al. The S RNA segment of tomato spotted wilt virus has an ambisense character[J]. Journal of General Virology, 1990, 71(5):1001-1007. doi: 10.1099/0022-1317-71-5-1001
|
[18] |
KAINZ M, HILSON P, SWEENEY L, et al. Interaction between Tomato spotted wilt virus N protein monomers involves nonelectrostatic forces governed by multiple distiNCt regions in the primary structure[J]. Phytopathology, 2004, 94(7):759-65. doi: 10.1094/PHYTO.2004.94.7.759
|
[19] |
RICHMOND K E, CHENAULT K, SHERWOOD J L, et al. Characterization of the Nucleic Acid Binding Properties of Tomato Spotted Wilt Virus Nucleocapsid Protein[J]. Virology, 1998, 248(1):6-11. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=9359c254d3c0bb2aac59e067cc3d19f6
|
[20] |
RIBEIRO D, BORST J W, GOLDBACH R, et al. Tomato spotted wilt virus nucleocapsid protein interacts with both viral glycoproteins Gn and Gc in planta[J]. Virology, 2009, 383(1):121. doi: 10.1016/j.virol.2008.09.028
|
[21] |
UHRIG J F, BUCHER G L, SCHREIER P H. The Movement Protein NSm of Tomato Spotted Wilt Tospovirus (TSWV):RNA Binding, Interaction with the TSWV N Protein, and Identification of Interacting Plant Proteins[J]. Proceedings of the National Academy of ScieNCes of the United States of America, 2000, 97(5):2373-2378. doi: 10.1073/pnas.030548397
|
[22] |
JOHN A L. TRBO:A High-Efficiency Tobacco Mosaic Virus RNA-Based over-expression Vector[J]. Plant Physiology, 2007(4):1232-1240. http://d.old.wanfangdata.com.cn/NSTLQK/NSTL_QKJJ02703031/
|
[23] |
孙淼, 荆陈沉, 楚成茹, 等.重庆辣椒上番茄斑萎病毒的血清学检测及分子鉴定[J].园艺学报, 2017, 44(3):487-494. http://d.old.wanfangdata.com.cn/Periodical/yyxb201703008
|
[24] |
于翠, 邓凤林, 杨翠云, 等.番茄斑萎病毒外壳蛋白原核表达及Dot-blot ELISA检测方法的建立[J].浙江大学学报, 2008, 34(6):597-601. http://d.old.wanfangdata.com.cn/Periodical/zjdxxb-nyysm200806003
|