Coat Protein-mediated Resistance to Turnip mosaic virus in Chinese Cabbage (Brassica rapa ssp pekinensis) by the Pollen-tube Pathway

文献类型: 外文期刊

第一作者: Han, Li Wei

作者: Han, Li Wei;Ge, Yu;Cui, Chong Shi;Qu, Shu Ping;Yao, Lei

作者机构:

关键词: Chinese cabbage (B. rapa ssp pekinensis);Turnip mosaic virus;TuMV-CP;Coat protein-mediated resistance;Pollen-tube pathway

期刊名称:INTERNATIONAL JOURNAL OF AGRICULTURE AND BIOLOGY ( 影响因子:0.822; 五年影响因子:0.906 )

ISSN: 1560-8530

年卷期: 2014 年 16 卷 6 期

页码:

收录情况: SCI

摘要: Turnip mosaic virus of Chinese cabbage is the most destructive disease. Until now reliable sources of resistance and effective control methods are unavailable, so development of highly resistant breeding lines is desirable. In this research, we established a plant transformation system of coat protein-mediated resistance to Turnip mosaic virus. The TuMV-CP gene was introduced into Chinese cabbage through the pollen-tube pathway using the plasmid vector pBBBast-TuMV-CP (9.79 kb), which included TuMV-CP gene, expression regulatory sequence (CaMV 35S promoter, OCS terminator), the herbicide resistant Bar gene and other elements. Totally, 0.15% of T-0 plants showed positive for the gene TuMV-CP through PCR. Further PCR Southern blot analysis displayed that the gene TuMV-CP segments were transformed into To plants. (C) 2014 Friends Science Publishers

分类号:

  • 相关文献

[1]Coat protein-mediated resistance to Turnip mosaic virus in Chinese cabbage (B. rapa ssp pekinensis) by the pollen-tube pathway. Wei, Han Li,Yu, Ge,Shi, Cui Chong,Ping, Qu Shu,Lei, Rao. 2014

[2]Transformation of Soft Rot Resistant aiiA Gene into Chinese Cabbage (Brassica rapa ssp pekinensis) by the Pollen-tube Pathway. Han, Li-Wei,Cui, Chong-Shi,Qu, Shu-Ping,Ge, Yu,Yao, Lei. 2015

[3]Transformation of Soft Rot Resistant aiiA Gene into Chinese Cabbage (Brassica rapa ssp.pekinensis) by the Pollen-tube Pathway. Han, Li-Wei,Cui, Chong-Shi,Qu, Shu-Ping,Ge, Yu,Yao, Lei. 2015

[4]Inheritance and development of EST-SSR marker associated with turnip mosaic virus resistance in Chinese cabbage. Li, Qiaoyun,Zhang, Zhigang,Zhao, Zhizhong,Li, Qiaoyun,Zhang, Zhigang,Zhao, Zhizhong,Li, Qiaoyun,Zhang, Zhigang,Zhao, Zhizhong,Tong, Haishen,Song, Xiyun. 2011

[5]The C-terminal region of the Turnip mosaic virus P3 protein is essential for viral infection via targeting P3 to the viral replication complex. Cui, Xiaoyan,Wu, Guanwei,Chen, Xin,Cui, Xiaoyan,Yaghmaiean, Hoda,Wu, Guanwei,Wu, Xiaoyan,Wang, Aiming,Cui, Xiaoyan,Yaghmaiean, Hoda,Wu, Guanwei,Thorn, Greg,Wang, Aiming,Wu, Xiaoyan,Yaghmaiean, Hoda. 2017

[6]Variation between Turnip mosaic virus isolates in Zhejiang Province, China and evidence for recombination. Chen, JP,Chen, JP,Adams, MJ. 2002

[7]Multiple virus resistance using artificial trans-acting siRNAs. Chen, Lingyun,Cai, Jianyu,Zhan, Linlin,Wu, Xiaoyun,Cheng, Xiaofei,Wu, Xiaoxia,Liu, Qi.

[8]Multiple copies of eukaryotic translation initiation factors in Brassica rapa facilitate redundancy, enabling diversification through variation in splicing and broad-spectrum virus resistance. Nellist, Charlotte F.,Jenner, Carol E.,Moore, Jonathan D.,Barker, Guy C.,Walsh, John A.,Qian, Wei,Zhang, Shujiang,Wang, Xiaowu,Sun, Rifei,Briggs, William H.. 2014

[9]NbEXPA1, an alpha-expansin, is plasmodesmata-specific and a novel host factor for potyviral infection. Li, Fangfang,Renaud, Justin,Shen, Wentao,Li, Yinzi,Guo, Lihua,Cui, Hongguang,Sumarah, Mark,Wang, Aiming,Park, Sang-Ho,Li, Yinzi,Wang, Aiming,Shen, Wentao,Guo, Lihua,Park, Sang-Ho,Cui, Hongguang. 2017

[10]Mapping the self-interacting domains of TuMV HC-Pro and the subcellular localization of the protein. Zheng, Hongying,Yan, Fei,Lu, Yuwen,Sun, Liying,Lin, Lin,Chen, Jianping,Zheng, Hongying,Cai, Li,Hou, Mingsheng. 2011

[11]Development of gene-based markers for the Turnip mosaic virus resistance gene retr02 in Brassica rapa. Li, Guo-Liang,Qian, Wei,Zhang, Shu-Jiang,Zhang, Shi-Fan,Li, Fei,Zhang, Hui,Wu, Jian,Wang, Xiao-Wu,Sun, Ri-Fei.

[12]Genome-wide identification of turnip mosaic virus-responsive microRNAs in non-heading Chinese cabbage by high-throughput sequencing. Wang, Zhen,Jiang, Dahua,Zhang, Changwei,Tan, Huawei,Li, Yanxiao,Lv, Shanwu,Hou, Xilin,Wang, Zhen,Jiang, Dahua,Zhang, Changwei,Tan, Huawei,Li, Yanxiao,Lv, Shanwu,Hou, Xilin,Wang, Zhen,Jiang, Dahua,Zhang, Changwei,Tan, Huawei,Li, Yanxiao,Lv, Shanwu,Hou, Xilin,Cui, Xiaoyan.

作者其他论文 更多>>