Aspects of soybean insect resistance breeding in China

文献类型: 外文期刊

第一作者: Wang, S

作者: Wang, S

作者机构:

关键词: soybean;insect resistance;breeding

期刊名称:VII WORLD SOYBEAN RESEARCH CONFERENCE - VI INTERNATIONAL SOYBEAN PROCESSING AND UTILIZATION CONFERENCE - III CONGRESSO BRASILEIRO DE SOJA, PROCEEDINGS

ISSN:

年卷期: 2004 年

页码:

收录情况: SCI

摘要: Progress in soybean insect resistance breeding in China is briefly outlined, which includes species and distribution of soybean insect pests in China, identification of insect resistance and screening of resistance sources, resistance mechanism and inheritance of soybeans to insect pests, and soybean insect resistance breeding. Some suggestions on soybean insect resistance breeding are proposed.

分类号:

  • 相关文献

[1]Soybean GmAOC3 Promotes Plant Resistance to the Common Cutworm by Increasing the Expression of Genes Involved in Resistance and Volatile Substance Emission in Transgenic Tobaccos. Wu, Qian,Wang, Hui,Wang, Yongli,Yu, Deyue,Wu, Qian,Wang, Dagang,Zhang, Lei,Huang, Zhiping,Wu, Juanjuan.

[2]Genome-wide analysis of terpene synthases in soybean: Functional characterization of GmTPS3. Huang, Fang,Wang, Xia,Wang, Jiao,Yu, Deyue,Liu, Jianyu,Zhang, Man,Zheng, Rui.

[3]Temporospatial Characterization of Nutritional and Bioactive Components of Soybean Cultivars in China. Wu, Tingting,Yao, Yang,Sun, Shi,Wang, Caijie,Song, Wenwen,Wu, Cunxiang,Jiang, Bingjun,Hou, Wensheng,Ren, Guixing,Han, Tianfu,Jia, Hongchang,Man, Weiqun,Fu, Lianshun.

[4]Genetic variability assessed by microsatellites in the breeding populations of the shrimp Penaeus (Fenneropenaeus) chinensis in China. Zhang, Tianshi,Kong, Jie,Wang, Weiji,Wang, Qingyin,Zhang, Tianshi.

[5]Transgenic tobacco plants expressing synthetic Cry1Ac and Cry1le genes are more toxic to cotton bollworm than those containing one gene. Wang GuoYing,Lian Yun,Jia ZhiWei,Wang BaoMin,He KangLai,Song FuPing.

[6]Cross-resistance studies of Cry1Ac-resistant strains of Helicoverpa armigera (Lepidoptera : Noctuidae) to Cry2Ab. Luo, Shudong,Wu, Kongming,Tian, Yan,Liang, Gemei,Feng, Xue,Zhang, Jie,Guo, Yuyuan.

[7]Enhanced yield performance of Bt rice under target-insect attacks: implications for field insect management. Xia, Hui,Lu, Bao-Rong,Xu, Kai,Wang, Wei,Yang, Xiao,Yang, Chao,Ye, Wenli,Luo, Ju,Lai, Fengxiang,Fu, Qiang.

[8]Cre/lox-mediated Marker Gene Excision in Elite Indica Rice Plants Transformed with Genes Conferring Resistance to Lepidopteran Insects. Chen, SB,Liu, X,Peng, HY,Gong, WK,Wang, R,Wang, F,Zhu, Z.

[9]Vacuum infiltration transformation of non-heading Chinese cabbage (Brassica rapa L. ssp chinensis) with the pinII gene and bioassay for diamondback moth resistance. Zhang, Junjie,Liu, Fan,Zhang, Junjie,Huang, Yubi,Yao, Lei,Zhao, Qing,Luo, Chen.

[10]Modeling the evolution of insect resistance to one- and two-toxin Bt-crops in spatially heterogeneous environments. Huang, Yunxin,Qin, Yun,Li, Zhaohua,Feng, Hongqiang,Wan, Peng.

[11]Identification of microRNAs by small RNA deep sequencing for synthetic microRNA mimics to control Spodoptera exigua. Zhang, Yu Liang,Huang, Qi Xing,Jia, Rui Zong,Liu, Zhi Xin,Yu, Nai Tong,Chen, Xin,Guo, An Ping,Yin, Guo Hua,Lee, Samantha,Pennerman, Kayla K..

[12]Yield benefit and underlying cost of insect-resistance transgenic rice: Implication in breeding and deploying transgenic crops. Xia, Hui,Chen, Liangyan,Lu, Bao-Rong,Wang, Feng,Chen, Liangyan.

[13]Novel Alleles of Two Tightly Linked Genes Encoding Polygalacturonase-Inhibiting Proteins (VrPGIP1 and VrPGIP2) Associated with the Br Locus That Confer Bruchid (Callosobruchus spp.) Resistance to Mungbean (Vigna radiata) Accession V2709. Kaewwongwal, Anochar,Somta, Prakit,Yimram, Tarika,Srinives, Peerasak,Kaewwongwal, Anochar,Somta, Prakit,Srinives, Peerasak,Chen, Jingbin,Chen, Xin,Kongjaimun, Alisa. 2017

[14]Expressing a modified cowpea trypsin inhibitor gene to increase insect tolerance against Pieris rapae in Chinese cabbage. Ma, Xiaoli,Pei, Yanxi,Ma, Xiaoli,Zhu, Zhen,Li, Yane,Yang, Guangdong. 2017

[15]A novel synthetic Cry1Ab gene resists rice insect pests. Song, F. S.,Song, F. S.,Ni, D. H.,Li, H.,Duan, Y. B.,Yang, Y. C.,Ni, J. L.,Lu, X. Z.,Wei, P. C.,Li, L.,Yang, J. B.,Li, H.,Wei, P. C.. 2014

[16]Genetic analysis and pyramiding of two gall midge resistance genes (Gm-2 and Gm-6t) in rice (Oryza sativa L.). Katiyar, S,Verulkar, S,Chandel, G,Zhang, Y,Huang, B,Bennett, J. 2001

[17]Generation of selectable marker-free transgenic rice resistant to chewing insects using two co-transformation systems. Yu, Hengxiu,Wang, Ling,Zhao, Zhipeng,Gong, Zhiyun,Tang, Shuzhu,Liu, Qiaoquan,Gu, Minghong,Yao, Quanhong,Zhao, Zhipeng,Wang, Ling. 2009

[18]Developing transgenic maize (Zea mays L.) with insect resistance and glyphosate tolerance by fusion gene transformation. Lang Zhi-hong,Lu Wei,Zhu Li,Lin Min,Huang Da-fang,Zhang Jie,He Kang-lai. 2015

[19]Frequency of Bt resistance genes in Helicoverpa armigera populations from the Yellow River cotton-farming region of China. Wu, KM,Gould, F,Feng, HQ,He, YZ,Guo, YY. 2004

[20]Acquiring transgenic tobacco plants with insect resistance and glyphosate tolerance by fusion gene transformation. Sun, He,Lang, Zhihong,Zhu, Li,Huang, Dafang. 2012

作者其他论文 更多>>