Detection and epidemic dynamic of ToCV and CCYV with Bemisia tabaci and weed in Hainan of China

文献类型: 外文期刊

第一作者: Zhou, Xuguo

作者: Zhou, Xuguo;Tang, Xin;Shi, Xiaobin;Zhang, Deyong;Liu, Yong;Li, Fan;Yan, Fei;Zhang, Youjun;Zhou, Xuguo

作者机构:

关键词: Tomato chlorosis virus;cucurbit chlorotic yellows virus;Bemisia tabaci;Molecular identification;Q biotype;Alternanthera philoxeroides

期刊名称:VIROLOGY JOURNAL ( 影响因子:4.099; 五年影响因子:3.719 )

ISSN: 1743-422X

年卷期: 2017 年 14 卷

页码:

收录情况: SCI

摘要: Background: In recent years, two of the crinivirus, Tomato chlorosis virus (ToCV) and Cucurbit chlorotic yellows virus (CCYV) have gained increasing attention due to their rapid spread and devastating impacts on vegetable production worldwide. Both of these viruses are transmitted by the sweet potato whitefly, Bemisia tabaci (Gennadius), in a semi-persistent manner. Up to now, there is still lack of report in Hainan, the south of China. Methods: We used observational and experimental methods to explore the prevalence and incidence dynamic of CCYV and ToCV transmitted by whiteflies in Hainan of China. Results: In 2016, the chlorosis symptom was observed in the tomato and cucumber plants with a large number of B. tabaci on the infected leaves in Hainan, China, with the incidence rate of 69.8% and 62.6% on tomato and cucumber, respectively. Based on molecular identification, Q biotype was determined with a viruliferous rate of 65.0% and 55.0% on the tomato and cucumber plants, respectively. The weed, Alternanthera philoxeroides near the tomato and cucumber was co-infected by the two viruses. Furthermore, incidence dynamic of ToCV and CCYV showed a close relationship with the weed, Alternanthera philoxeroides, which is widely distributed in Hainan. Conclusion: Our results firstly reveal that the weed, A. philoxeroides is infected by both ToCV and CCYV. Besides, whiteflies showed a high viruliferous rate of ToCV and CCYV. Hainan is an extremely important vegetable production and seed breeding center in China. If the whitefly can carry these two viruses concurrently, co-infection in their mutual host plants can lead to devastating losses in the near future.

分类号:

  • 相关文献

[1]Transmission Efficiency, Preference and Behavior of Bemisia tabaci MEAM1 and MED under the Influence of Tomato Chlorosis Virus. Zhang, Deyong,Liu, Yong,Tang, Xin,Zhang, Xing,Li, Fan,Yan, Fei,Zhang, Youjun,Zhou, Xuguo. 2018

[2]A Semipersistent Plant Virus Differentially Manipulates Feeding Behaviors of Different Sexes and Biotypes of Its Whitefly Vector. Lu, Shaohua,Li, Jingjing,Wang, Xueli,Song, Danyang,Bai, Rune,Shi, Yan,Yan, Fengming,Gu, Qinsheng,Kuo, Yen-Wen,Falk, Bryce W.. 2017

[3]Effects of host, temperature and relative humidity on competitive displacement of two invasive Bemisia tabaci biotypes [Q and B]. Tao, Yun-Li,Zhang, You-Jun,Wan, Fang-Hao,Brown, Judith K.. 2012

[4]Analysis of the Role of the Drought-Induced Gene DRI15 and Salinity-Induced Gene SI1 in Alternanthera philoxeroides Plasticity Using a Virus-Based Gene Silencing Tool. Bai, Chao,Wang, Peng,Fan, Qiang,Wang, Le,Zhang, Zhen-Nan,Wu, Jia-He,Bai, Chao,Fu, Wei-Dong,Song, Zhen,Zhang, Guo-Liang. 2017

[5]HETEROLOGOUS EXPRESSION OF AN ALLIGATORWEED HIGH-AFFINITY POTASSIUM TRANSPORTER GENE ENHANCES SALINITY TOLERANCE IN ARABIDOPSIS THALIANA. Song, Zhizhong,Yang, Shunying,Jin, Man,Su, Yanhua,Song, Zhizhong,Yang, Shunying,Jin, Man,Zhu, Hong,Zhu, Hong. 2014

[6]Over-expression of ApKUP3 enhances potassium nutrition and drought tolerance in transgenic rice. Song, Z. -Z.,Song, Z. -Z.,Yang, S. -Y.,Su, Y. -H.,Yang, S. -Y.,Zuo, J.,Zuo, J..

[7]Differential responses of lipid peroxidation and antioxidants in Alternanthera philoxeroides and Oryza sativa subjected to drought stress. Gao, Jianming,Xiao, Qiang,Ding, Liping,Chen, Mingjie,Yin, Liang,Li, Jinzhi,Zhou, Shiyi,He, Guangyuan,Gao, Jianming.

[8]Molecular identification of the genus Thryssa based on DNA barcoding. Ma, C. -Y.,Ma, H. -Y.,Ni, Y.,Wang, W.,Ma, L. -B.. 2015

[9]Advances in molecular identification, taxonomy, genetic variation and diagnosis of Toxocara spp.. Chen, Jia,Zhou, Dong-Hui,Xu, Min-Jun,Huang, Si-Yang,Li, Ming-Wei,Zhu, Xing-Quan,Chen, Jia,Nisbet, Alasdair J.,Li, Ming-Wei,Wang, Chun-Ren,Zhu, Xing-Quan,Zhu, Xing-Quan.

[10]The use of RAPD markers for detecting genetic diversity, relationship and molecular identification of Chinese elite tea genetic resources [Camellia sinensis (L.) O. Kuntze] preserved in a tea germplasm repository. Chen, L,Gao, QK,Chen, DM,Xu, CJ.

[11]Detection of Contarinia nasturtii (Diptera : Cecidomyiidae) in New York, a new pest of cruciferous plants in the United States. Kikkert, Julie R.,Hoepting, Christine A.,Wu, Qingjun,Wang, Ping,Baur, Robert,Shelton, Anthony M..

[12]One stop shop: backbones trees for important phytopathogenic genera: I (2014). Hyde, Kevin D.,Mortimer, Peter E.,Xu, Jian-Chu,Hyde, Kevin D.,Mortimer, Peter E.,Xu, Jian-Chu,Hyde, Kevin D.,Ariyawansa, Hiran A.,Dissanayake, Asha J.,Goonasekara, Ishani D.,Jayawardena, Ruvishika S.,Liu, Jian-Kui,Maharachchikumbura, Sajeewa S. N.,Manamgoda, Dimuthu S.,Udayanga, Dhanushka,Hyde, Kevin D.,Ariyawansa, Hiran A.,Dissanayake, Asha J.,Goonasekara, Ishani D.,Jayawardena, Ruvishika S.,Liu, Jian-Kui,Maharachchikumbura, Sajeewa S. N.,Manamgoda, Dimuthu S.,Udayanga, Dhanushka,Hyde, Kevin D.,Nilsson, R. Henrik,Hyde, Kevin D.,Alias, S. Aisyah,Maharachchikumbura, Sajeewa S. N.,Blair, Jaime E.,Cai, Lei,Zhou, Nan,de Cock, Arthur W. A. M.,Dissanayake, Asha J.,Jayawardena, Ruvishika S.,Li, Xinghong,Yan, JiYe,Gorczak, Michal,Pawlowska, Julia,Wrzosek, Marta,Hahn, Matthias,van Kan, Jan A. L.,Terhem, Razak B.,Levesque, C. Andre,Rintoul, Tara L.,Spies, Christoffel F. J.,Laurence, Matthew H.,Summerell, Brett A.,Martin, Frank N.,McKenzie, Eric H. C.,Nair, Prakash V. R..

[13]Molecular identification and expression of the Foxl2 gene during gonadal sex differentiation in northern snakehead Channa argus. Wang, Dan-Dan,Zhang, Gui-Rong,Wei, Kai-Jian,Ji, Wei,Gardner, Jonathan P. A.,Yang, Rui-Bin,Wang, Dan-Dan,Zhang, Gui-Rong,Wei, Kai-Jian,Ji, Wei,Gardner, Jonathan P. A.,Yang, Rui-Bin,Gardner, Jonathan P. A.,Chen, Kun-Ci.

[14]Studies on reproductive characteristics of an interspecific chimera between Brassica juncea and Brassica oleracea. Wang, Yan,Zhu, Xue-Yun,Chen, Li-Ping,Cheng, Qi,Wang, Yan,Chen, Li-Ping.

[15]Identification of WA-type three-line hybrid rice with real-time Polymerase Chain Reaction (PCR) method. Cheng, Y.,Chen, H. Y.,Mao, J. J.,Cao, A. X.,Zhu, S. F.,Cheng, Y.,Gao, B. D.,Mao, J. J.,Zhu, J. G..

[16]Molecular identification and the complete nucleotide sequence of TYLCV isolate from Shanghai of China. Zhang Yongping,Zhu Weimin,Wan Yanhui,Zhu Longying,Yu Li,Hui Zhang,Qiu Yang,Sha Kun,Zhang Yongping,Cui Huimei. 2008

[17]A one-step, single tube, duplex PCR to detect predation by native predators on invasive Bemisia tabaci MEAM1 and Frankliniella occidentalis. Wu, Xia,Zhou, Zhi-Xiang,Meng, Xiang-Qin,Wan, Fang-Hao,Zhang, Gui-Fen,Wan, Fang-Hao. 2014

[18]Host Plants Identification for Adult Agrotis ipsilon, a Long-Distance Migratory Insect. Liu, Yongqiang,Fu, Xiaowei,Xing, Zhenlong,Wu, Kongming,Mao, Limi. 2016

[19]The complete mitochondrial genome of Liriomyza huidobrensis and comparison with L. trifolii and L. sativae (Diptera: Agromyzidae). Lei, Zhongren,Wen, Jinzeng,Wang, Haihong,Li, Xue,Wang, Shuaiyu,Dong, Baoxin,Ren, Baozhen.

[20]First report of Stemphylium solani causing leaf spot on wild eggplant in China. Xie, Xue-Wen,Xie, Xue-Wen,Zhang, Zi-Xin,Wang, Ying-Ying,Shi, Yan-Xia,Chai, A-Li,Li, Bao-Ju,Du, Gong-Fu.

作者其他论文 更多>>