A transgenic wheat with a stilbene synthase gene resistant to powdery mildew obtained by biolistic method

文献类型: 外文期刊

第一作者: Zheng, J

作者: Zheng, J;Duan, XY;Sheng, BQ;Jia, SG;Wang, DW;Ouyang, JW;Li, JY;Li, LC;Tian, WZ;Hain, R;Jia, X

作者机构:

关键词: wheat;transformation by biolistic method;stilbene synthase

期刊名称:CHINESE SCIENCE BULLETIN ( 影响因子:1.649; 五年影响因子:1.738 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Stilbene, a kind of phytoalexin, plays an important role inresistance to fungal and bacterial infection in plants. It stronglyinhibits the growth of fungi and sprout of spore. Stilbene synthasegene (Vst1) obtained from grapevine has been transferred into commonspring wheat Jinghong 5 by using the biolistic transformation method.Five transgenic plants (T_o) were obtained From the bombarded 2014imature embryos.

分类号: N1

  • 相关文献

[1]Isolation and characterization of a novel chalcone synthase gene family from mulberry. Wang, Chuanhong,Zhi, Shuang,Liu, Changying,Xu, Fengxiang,Zhao, Aichun,Wang, Xiling,Tang, Xing,Yu, Maode,Wang, Chuanhong,Zhi, Shuang,Liu, Changying,Xu, Fengxiang,Zhao, Aichun,Wang, Xiling,Tang, Xing,Yu, Maode,Li, Zhengang,Huang, Ping.

[2]Kiwifruits (Actinidia deliciosa) transformed with a Vitis stilbene synthase gene produce piceid (resveratrol-glucoside). Kobayashi, S,Ding, CK,Nakamura, Y,Nakajima, I,Matsumoto, R. 2000

[3]Distribution of resveratrol and stilbene synthase in young grape plants (Vitis vinifera L. cv. Cabernet Sauvignon) and the effect of UV-C on its accumulation. Wang, Wei,Tang, Ke,Yang, Hao-Ru,Wang, Hui-Ling,Huang, Wei-Dong,Wang, Wei,Wen, Peng-Fei,Zhang, Ping.

[4]Characterization of Stilbene Synthase Genes in Mulberry (Morus atropurpurea) and Metabolic Engineering for the Production of Resveratrol in Escherichia coli. Wang, Chuanhong,Zhi, Shuang,Liu, Changying,Xu, Fengxiang,Zhao, Aichun,Wang, Xiling,Ren, Yanhong,Yu, Maode,Li, Zhengang.

[5]Heat Priming Induces Trans-generational Tolerance to High Temperature Stress in Wheat. Wang, Xiao,Xin, Caiyun,Cai, Jian,Zhou, Qin,Dai, Tingbo,Cao, Weixing,Jiang, Dong,Xin, Caiyun. 2016

[6]Distribution Characteristics of Soil Cadmium in Different Textured Paddy Soil Profiles and Its Relevance with Cadmium Uptake by Crops. Wang Zheng-yin,Qin Yu-sheng,Zhan Shao-jun,Yu Hua,Tu Shi-hua. 2013

[7]Molecular cloning, functional verification, and evolution of TmPm3, the powdery mildew resistance gene of Triticum monococcum L.. Zhao, C. Z.,Li, Y. H.,Dong, H. T.,Geng, M. M.,Liu, W. H.,Li, F.,Ni, Z. F.,Xie, C. J.,Sun, Q. X.,Zhao, C. Z.,Dong, H. T.,Geng, M. M.,Liu, W. H.,Li, F.,Ni, Z. F.,Xie, C. J.,Sun, Q. X.,Zhao, C. Z.,Wang, X. J.. 2016

[8]Wheat Optimized Fertilization of High Yield Field with Returning Whole Stalks into the Soil in Huang-huai-hai Plain. Sui, Xue-Yan,Wang, Meng,Wang, Yong,Guo, Hong-Hai,Li, Zhan,Zhang, Xiao-Dong. 2016

[9]Effects of Cadmium Stress on Alternative Oxidase and Photosystem II in Three Wheat Cultivars. Xu, Fei,Zhang, Zhong-Wei,Chen, Yang-Er,Wang, Xiao,Shang, Jing,Lin, Hong-Hui,Duan, Yong-Ping,Tu, Shi-Hua,Feng, Wen-Qiang. 2010

[10]Haynaldia villosa NAM-V1 is linked with the powdery mildew resistance gene Pm21 and contributes to increasing grain protein content in wheat. Zhao, Chuanzhi,Lv, Xindi,Li, Yinghui,Li, Feng,Geng, Miaomiao,Mi, Yangyang,Ni, Zhongfu,Xie, Chaojie,Sun, Qixin,Zhao, Chuanzhi,Lv, Xindi,Li, Yinghui,Li, Feng,Geng, Miaomiao,Mi, Yangyang,Ni, Zhongfu,Xie, Chaojie,Sun, Qixin,Zhao, Chuanzhi. 2016

[11]Assessment of Land Suitability Potentials for Selecting Winter Wheat Cultivation Areas in Beijing, China, Using RS and GIS. Wang Da-cheng,Wang Ji-hua,Wang Da-cheng,Li Cun-jun,Song Xiao-yu,Wang Ji-hua,Yang Xiao-dong,Huang Wen-jiang,Wang Jun-ying,Zhou Ji-hong. 2011

[12]Dissipation and Residues of Dichlorprop-P and Bentazone in Wheat-Field Ecosystem. Feng, Xiaoxiao,Pan, Lixiang,Zhang, Hongyan,Yu, Jianlei,Song, Guochun. 2016

[13]Competitive interaction in a jujube tree/wheat agroforestry system in northwest China's Xinjiang Province. Zhang, W.,Wang, B. J.,Gan, Y. W.,Duan, Z. P.,Hao, X. D.,Lv, X.,Li, L. H.,Xu, W. L.. 2017

[14]Cuticular Wax Accumulation Is Associated with Drought Tolerance in Wheat Near-Isogenic Lines. Guo, Jun,Yu, Xiaocong,Li, Haosheng,Cheng, Dungong,Liu, Aifeng,Liu, Jianjun,Liu, Cheng,Song, Jianmin,Guo, Jun,Yu, Xiaocong,Li, Haosheng,Cheng, Dungong,Liu, Aifeng,Liu, Jianjun,Liu, Cheng,Song, Jianmin,Xu, Wen,Shen, Hao,Zhao, Shijie. 2016

[15]Preliminary Study on the Physiological Characteristics of Transgenic Wheat with Maize C-4-pepc Gene in Field Conditions. Han, L. L.,Han, L. L.,Xu, W. G.,Hu, L.,Li, Y.,Qi, X. L.,Zhang, J. H.,Zhang, H. F.,Wang, Y. X.. 2014

[16]Effect of Biochars from Rice Husk, Bran, and Straw on Heavy Metal Uptake by Pot-Grown Wheat Seedling in a Historically Contaminated Soil. Zheng, Ruilun,Xiao, Bo,Chen, Zheng,Wang, Xiaohui,Huang, Yizong,Sun, Guoxin,Cai, Chao. 2013

[17]Detection of Fusarium head blight resistance QTL in a wheat population using bulked segregant analysis. Shen, X,Zhou, M,Lu, W,Ohm, H. 2003

[18]NOVEL FLUORESCENT SEQUENCE-RELATED AMPLIFIED POLYMORPHISM (FSRAP) MARKERS FOR THE CONSTRUCTION OF A GENETIC LINKAGE MAP OF WHEAT (Triticum aestivum L.). Zhang, Li,Yu, Yan,Wei, Shuhong,Yang, Jun,Yang, Zaijun,Qu, Jipeng,Peng, Zhengsong,Lu, Lu,Yang, Wuyun. 2017

[19]Different Tolerance in Bread Wheat, Durum Wheat and Barley to Fusarium Crown Rot Disease Caused by Fusarium pseudograminearum. Liu, Yaxi,Wei, Yuming,Zheng, Youliang,Liu, Yaxi,Ma, Jun,Yan, Wei,Liu, Chunji,Ma, Jun,Yan, Guijun,Yan, Wei,Zhou, Meixue,Zhou, Meixue. 2012

[20]Research on Rapid and Non-Destructive Identification of Aging Wheat Based on ATR-Terahertz Spectroscopy Combined with PLS-DA. Wang Dong,Pan Li-gang,Li An,Jin Xin-xin,Ma Zhi-hong,Wang Ji-hua,Wang Dong,Pan Li-gang,Li An,Jin Xin-xin,Ma Zhi-hong,Wang Ji-hua,Liu Long-hai,Jiang, Justin. 2016

作者其他论文 更多>>