STATUS OF INSECTICIDE RESISTANCE OF THE WHITEBACKED PLANTHOPPER, SOGATELLA FURCIFERA (HEMIPTERA: DELPHACIDAE)

文献类型: 外文期刊

第一作者: Su, Jianya

作者: Su, Jianya;Wang, Zhiwei;Zhang, Kai;Tian, Xiangrui;Gao, Cong Fen;Yin, Yanqiong;Zhao, Xueqing;Shen, Aidong

作者机构:

关键词: whitebacked planthopper;insecticide resistance;buprofezin;imidacloprid;thiamethoxam;chlorpyrifos;pymetrozine

期刊名称:FLORIDA ENTOMOLOGIST ( 影响因子:1.425; 五年影响因子:1.595 )

ISSN: 0015-4040

年卷期: 2013 年 96 卷 3 期

页码:

收录情况: SCI

摘要: Frequent outbreaks and widespread transmission of rice black-streaked dwarf virus by Sogatella furcifera (Horvath) (Heraiptera: Delphacidae) have aggravated yield losses of rice in eastern China. The use of insecticides for suppression of the vector has been a fundamental approach to prevent epidemics of the virus disease. However, the status of insecticide resistance in S. furcifera has not been examined recently in China. In this study, dose responses of S. furcifera to buprofezin, imidacloprid, thiamethoxam, chlorpyrifos and pymetrozine were evaluated. Most populations in eastern China have developed moderate resistance to buprofezin (up to 25-fold). Approximately 32% of field populations exhibited moderate resistance to imidacloprid, while other field populations showed minor changes (7.6-fold) in their susceptibility to this insecticide. Low variation of susceptibility to thiamethoxam (<6-fold) was observed among field populations, and no obvious resistance to this product was observed. Obvious variation (10.2-fold) of susceptibility to chlorpyrifos existed in field populations of which 8% displayed moderate resistance, and 32% exhibited low level resistance. Most populations (72%) were susceptible to pymetrozine, and relatively low variation of susceptibility to it was detected among the field populations of S. furcifera. Frequent and extensive use of buprofezin had driven the rapid development of resistance, and buprofezin resistance is widespread in the field populations of S. furcifera in China. To prevent further development of the resistance, use of buprofezin should be limited and rotated with alternative insecticides with different modes of action.

分类号:

  • 相关文献

[1]Characterisation of Neonicotinoid and Pymetrozine Resistance in Strains of Bemisia tabaci (Hemiptera: Aleyrodidae) from China. Rao Qiong,Luo Chen,Rao Qiong,Zhang Hong-yu,Jones, Christopher M.,Devine, Greg J.,Gorman, Kevin,Denholm, Ian,Xu Yong-hua. 2012

[2]Identification of promoter polymorphisms in the cytochrome P450 CYP6AY1 linked with insecticide resistance in the brown planthopper, Nilaparvata lugens. Pang, R.,Dong, Y.,Liang, Z.,Zhang, W.,Li, Y.,Zhang, Y..

[3]Overexpression of a P450 gene (CYP6CW1) in buprofezin-resistant Laodelphax striatellus (Fallen). Zhang, Yueliang,Guo, Huifang,Yang, Qiong,Li, Shuo,Wang, Lihua,Zhang, Gufeng,Fang, Jichao. 2012

[4]Effects of imidacloprid and thiamethoxam as seed treatments on the early seedling characteristics and aphid-resistance of oilseed rape. Huang Liang,Lu Yao-bin,Huang Liang,Zhao Chun-lin,Huang Fang,Lu Yao-bin,Bai Run-e,Yan Feng-ming,Hao Zhong-ping. 2015

[5]Effectiveness of thiamethoxam and imidacloprid seed treatments against Bemisia tabaci (Hemiptera: Aleyrodidae) on cotton. Liu, Tong-Xian,Zhang, Liping,Zhang, Yongmei,Liu, Tong-Xian,Greenberg, Shoil M.,Zhang, Liping.

[6]Dynamic monitoring (B versus Q) and further resistance status of Q-type Bemisia tabaci in China. Zhang, Youjun,Zheng, Huixin,Xie, Wen,Wang, Shaoli,Wu, Qingjun,Zhang, Youjun,Zhou, Xiaomao.

[7]Comparative and combined acute toxicity of butachlor, imidacloprid and chlorpyrifos on earthworm, Eisenia fetida. Chen, Chen,Qian, Yongzhong,Wang, Yanhua,Zhao, Xueping,Wang, Qiang.

[8]Two cytochrome P450 genes are involved in imidacloprid resistance in field populations of the whitefly, Bemisia tabaci, in China. Yang, Xin,Zhou, Xiaomao,Yang, Xin,Xie, Wen,Wang, Shao-li,Wu, Qing-jun,Pan, Hui-peng,Li, Ru-mei,Yang, Ni-na,Liu, Bai-ming,Xu, Bao-yun,Zhang, You-jun. 2013

[9]Quantitative trait loci identification, fine mapping and gene expression profiling for ovicidal response to whitebacked planthopper (Sogatella furcifera Horvath) in rice (Oryza sativa L.). Yang, Yaolong,Xu, Jie,Leng, Yujia,Hu, Jiang,Huang, Lichao,Wang, Lan,Guo, Longbiao,Qian, Qian,Zeng, Dali,Xiong, Guosheng,Li, Jiayang,Zeng, Dali,Chen, Feng. 2014

[10]Effects of Temperature on Functional Response of Anagrus nilaparvatae Pang et Wang (Hymenoptera: Mymaridae) on the Eggs of Whitebacked Planthopper, Sogatella furcifera Horvath and Brown Planthopper, Nilaparvata lugens Stal. Peng Zhao-pu,Ma Ming-yong,He Yuan. 2012

[11]Electrical penetration graph evidence that pymetrozine toxicity to the rice brown planthopper is by inhibition of phloem feeding. He, Yueping,Chen, Li,Chen, Jianming,Zhang, Juefeng,Chen, Liezhong,Zhu, Yu Cheng,Chen, Li,Shen, Jinliang.

[12]Influence of Pymetrozine on Feeding Behaviors of Three Rice Planthoppers and a Rice Leafhopper using Electrical Penetration Graphs. He, Yueping,Zhang, Juefeng,Chen, Jianming,Chen, Li,Chen, Liezhong,Xiao, Pengfei,Wu, Quancong,Zhu, Yu Cheng.

[13]BEHAVIORAL-RESPONSES OF THE WHITEBACKED PLANTHOPPER SOGATELLA-FURCIFERA (HOMOPTERA, DELPHACIDAE) ON RICE PLANTS WHOSE ODORS HAVE BEEN MASKED. LIU, GJ,SAXENA, RC,WILKINS, RM. 1994

[14]The Toxicity and Detoxifying Mechanism of Cycloxaprid and Buprofezin in Controlling Sogatella furcifera (Homoptera: Delphacidae). Chang, Xiaoli,Yuan, Yongda,Zhang, Tianshu,Wang, Dongsheng,Du, Xingbin,Chen, Haixia,Chen, Yaozhong,Jiao, Yuetong,Teng, Haiyuan,Wu, Xiangwen. 2015

[15]Buprofezin susceptibility survey, resistance selection and preliminary determination of the resistance mechanism in Nilaparvata lugens (Homoptera : Delphacidae). Wang, Yanhua,Gao, Congfen,Xu, Zhiping,Zhang, Jiushuang,Li, Wenhong,Dai, Dejiang,Lin, Youwei,Zhou, Weijun,Shen, Jinliang,Wang, Yanhua,Zhu, Yu Cheng. 2008

[16]Susceptibility to neonicotinoids and risk of resistance development in the brown planthopper, Nilaparvata lugens (St(a)over-circlel) (Homoptera: Delphacidae). Zhu, Yu Cheng,Wang, Yanhua,Chen, Jin,Ma, Chongyong,Huang, Yue,Shen, Jinliang,Wang, Yanhua. 2008

[17]Residue Determination of Hexythiazox and Buprofezin in Tea, Marrow and Mango by Gas Chromatography Coupled with Tandem Mass Spectrometry after Dispersive Solid Phase Extraction Cleanup. Zhang Xin-Zhong,Luo Feng-Jian,Liu Guang-Ming,Lou Zheng-Yun,Chen Zong-Mao,Zhang Xin-Zhong,Luo Feng-Jian,Liu Guang-Ming,Lou Zheng-Yun,Chen Zong-Mao,Zhang Xin-Zhong,Luo Feng-Jian,Liu Guang-Ming,Lou Zheng-Yun,Chen Zong-Mao,Zhang Fen. 2012

[18]Knockdown of NADPH-cytochrome P450 reductase results in reduced resistance to buprofezin in the small brown planthopper, Laodelphax striatellus (fallen). Zhang, Yueliang,Wang, Yaming,Wang, Lihua,Yao, Jing,Guo, Huifang,Fang, Jichao,Wang, Yaming.

[19]Glutathione S-transferases are involved in thiamethoxam resistance in the field whitefly Bemisia tabaci Q (Hemiptera: Aleyrodidae). Yang, Xin,He, Chao,Xie, Wen,Liu, Yating,Xia, Jixing,Yang, Zezong,Guo, Litao,Wen, Yanan,Wang, Shaoli,Wu, Qingjun,Yang, Fengshan,Zhou, Xiaomao,Zhang, Youjun.

[20]Transcriptome profiling of the whitefly Bemisia tabaci reveals stage-specific gene expression signatures for thiamethoxam resistance. Yang, N.,Xie, W.,Jiao, X.,Yang, X.,Liu, B.,Li, R.,Zhang, Y.,Jones, C. M.,Bass, C.. 2013

作者其他论文 更多>>