Transgenic Tobacco Expressing Lycoris radiata Agglutinin Showed Enhanced Resistance to Aphids

文献类型: 外文期刊

第一作者: Pang, YZ

作者: Pang, YZ;Yao, RH;Shen, GA;Qi, HX;Tan, F;Sun, XF;Tang, KX

作者机构:

关键词: insect bioassay;lycoris radiata agglutinin (LRA);transgenic tobacco;peach potato aphid (myzus persicae)

期刊名称:ACTA BOTANICA SINICA ( 影响因子:0.599; )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Transgenic plants expressing foreign genes resulting in resistance against pests could make significant contribution to sustainable agriculture. Considerable progress has been achieved to control the chewing insect pests by the development of transgenic plants expressing Bacillus thuringiensis endotoxins (Barton and Miller, 1993) or plant-derived proteins such as protease inhibitor (Hoffman et al., 1992; Hilder et al., 1993) or lectins (Boulter et al., 1990). However, there are fewer reports on the successful control of sap-sucking insects belonging to the order Homoptera by the use of genetic engineering technology. The sap-sucking insects have piercing and sucking mouth-parts and feed upon sap of the plants and most of them are serious pests of agricultural and horticultural crops including aphids (Aphididae), whiteflies (Aleyrodidae), planthoppers (Delphacidae) and leafhoppers (Cicadellidae). Crop is destroyed not only by pest feeding, but also by plant viruses produced through lesions that the mouthparts made.

分类号: Q94

  • 相关文献

[1]Transgenic tobacco expressing an Arisaema heterophyllum agglutinin gene displays enhanced resistance to aphids. Yao, JH,Zhao, XY,Qi, HX,Wan, BL,Chen, F,Sun, XF,Yu, SQ,Tang, KX. 2004

[2]Transgenic tobacco expressing Pinellia ternata agglutinin confers enhanced resistance to aphids. Yao, JH,Pang, YZ,Qi, HX,Wan, BL,Zhao, XY,Kong, WW,Sun, XF,Tang, KX. 2003

[3]Overexpression of CaHSP26 in transgenic tobacco alleviates photoinhibition of PSII and PSI during chilling stress under low irradiance. Guo, Shang-Jing,Zhou, Hai-Yan,Zhang, Xian-Sheng,Li, Xin-Guo,Meng, Qing-Wei. 2007

[4]Overexpression of a tomato flavanone 3-hydroxylase-like protein gene improves chilling tolerance in tobacco. Zhang, Song,Wang, Guo-Dong,Kong, Fan-Ying,Meng, Chen,Deng, Yong-Sheng.

[5]Identification and differential expression of two isogenes encoding 1-deoxy-D-xylulose 5-phosphate reductoisomerase in Glycine max. Zhang, Man,Li, Kai,Liu, Jianyu,Yu, Deyue,Zhang, Man. 2012

[6]A Cu/Zn superoxide dismutase gene from Saussurea involucrata Kar. & Kir., SiCSD, enhances drought, cold, and oxidative stress in transgenic tobacco. Zhang, L.,Sun, L.,Zhang, L.,Qiu, H.,Liu, C.,Wang, A.,Zhu, J.,Deng, F.. 2017

[7]Combinational transformation of three wheat genes encoding fructan biosynthesis enzymes confers increased fructan content and tolerance to abiotic stresses in tobacco. Bie, Xiaomin,Wang, Ke,She, Maoyun,Du, Lipu,Zhang, Shuangxi,Gao, Xiang,Lin, Zhishan,Ye, Xingguo,Bie, Xiaomin,Zhang, Shuangxi,Li, Jiarui. 2012

[8]Expression of a wheat MYB gene in transgenic tobacco enhances resistance to Ralstonia solanacearum, and to drought and salt stresses. Liu, Hongxia,Zhou, Xianyao,Dong, Na,Liu, Xin,Zhang, Zengyan,Zhou, Xianyao,Zhang, Huaiyu.

[9]Transcriptional Modulation of Ethylene Response Factor Protein JERF3 in the Oxidative Stress Response Enhances Tolerance of Tobacco Seedlings to Salt, Drought, and Freezing. Wu, Lijun,Zhang, Zhijin,Zhang, Haiwen,Huang, Rongfeng,Wu, Lijun,Wang, Xue-Chen,Wu, Lijun,Zhang, Zhijin,Zhang, Haiwen,Huang, Rongfeng,Wu, Lijun,Zhang, Zhijin,Zhang, Haiwen,Huang, Rongfeng.

[10]Evaluation of transgenic tobacco expressing two insecticidal genes to delay resistance development of Helicoverpa armigera. Fan, YL,Fan, XL,Shi, XP,Lu, MG.

[11]Overexpression of a peanut NAC gene, AhNAC4, confers enhanced drought tolerance in tobacco. Tang, G. Y.,Xu, P. L.,Shan, L.,Shao, F. X.,Liu, Z. J..

[12]Ectopic expression of peanut acyl carrier protein in tobacco alters fatty acid composition in the leaf and resistance to cold stress. Tang, G. -Y.,Liu, Z. -J.,Bi, Y. -P.,Shan, L.,Tang, G. -Y.,Liu, Z. -J.,Bi, Y. -P.,Shan, L.,Tang, G. -Y.,Liu, Z. -J.,Bi, Y. -P.,Shan, L.,Wei, L. -Q..

[13]Isolation and functional characterisation of CDPKs gene from Arachis hypogaea under salt stress. Li, Yan,Guo, Feng,Meng, Jing-Jing,Li, Xin-Guo,Li, Yan,Wan, Shu-Bo,Fang, Feng,Xia, Guang-Min.

[14]Peanut violaxanthin de-epoxidase alleviates the sensitivity of PSII photoinhibition to heat and high irradiance stress in transgenic tobacco. Yang, Sha,Meng, De-Yun,Hou, Lin-Lin,Li, Yan,Guo, Feng,Meng, Jing-Jing,Li, Xin-Guo,Wan, Shu-Bo,Meng, De-Yun,Hou, Lin-Lin.

[15]Overexpression of an MYB-Related Gene FvMYB1 from Fraxinus velutina Increases Tolerance to Salt Stress in Transgenic Tobacco. Li, Tian,Sun, Jingkuan,Bi, Yuping,Peng, Zhenying.

[16]Overexpression of SoCYP85A1, a Spinach Cytochrome p450 Gene in Transgenic Tobacco Enhances Root Development and Drought Stress Tolerance. Duan, Fangmeng,Song, Wenwen,Ding, Jun,Feng, Yuqi,Lee, Dongsun,Lu, Xueli,Feng, Yuqi. 2017

[17]Oral immunization of mice with plant-derived fimbrial adhesin FaeG induces systemic and mucosal K88ad enterotoxigenic Escherichia coli-specific immune responses. Liang, WQ,Huang, YH,Yang, XH,Zhou, Z,Pan, AH,Qian, BJ,Huang, C,Chen, JX,Zhang, DB. 2006

[18]Chloroplast-targeted expression of the codon-optimized truncated cry1Ah gene in transgenic tobacco confers a high level of protection against insects. Huang, Dafang,Li, Xiuying,Li, Shengyan,Lang, Zhihong,Zhu, Li,Huang, Dafang,Li, Shengyan,Zhang, Jie. 2013

[19](E)-beta-Farnesene synthase genes affect aphid (Myzus persicae) infestation in tobacco (Nicotiana tabacum). Yu, Xiudao,Ma, Youzhi,Wang, Genping,Xu, Zhaoshi,Zhang, Baoming,Xia, Lanqin,Jones, Huw D.,Pickett, John A.,Zhang, Yongjun,Ren, Guangwei. 2012

[20]Cloning and Characterization of a Putative CTR1 Gene from Wheat. Bi Cai-Li,Wen Xiao-Jie,Zhang Xue-Yong,Liu Xu,Bi Cai-Li. 2010

作者其他论文 更多>>