Sub-lethal effects of four neonicotinoid seed treatments on the demography and feeding behaviour of the wheat aphid Sitobion avenae

文献类型: 外文期刊

第一作者: Miao, Jin

作者: Miao, Jin;Du, Zhen-Bao;Wu, Yu-Qing;Gong, Zhong-Jun;Jiang, Yue-Li;Duan, Yun;Li, Tong;Du, Zhen-Bao;Lei, Chao-Liang

作者机构:

关键词: sub-lethal effect;neonicotinoid insecticide;Sitobion avenae;demographic growth;feeding behaviour

期刊名称:PEST MANAGEMENT SCIENCE ( 影响因子:4.845; 五年影响因子:4.674 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: BACKGROUND: Neonicotinoids are widely used as seed treatments in wheat fields against the grain aphid (Sitobion avenae F.) in China. Due to the degradation of neonicotinoids in wheat plants, wheat aphids are more likely to be exposed to low concentrations of neonicotinoids over long periods. It is therefore expected that neonicotinoids, aside from acute (lethal) effects, may also cause a range of sub-lethal effects on this pest. RESULTS: The growth and fertility of S. avenae feeding on wheat plants treated with a sub-lethal concentration (LC_(10)) of imidacloprid, dinotefuran, thiacloprid and thiamethoxam were not greatly affected. However, the population growth parameters of S. avenae were significantly reduced at median lethal concentration (LC_(50)). Electronic penetration graph recordings showed a higher percentage of no probing phase and shorter phloem sap ingestion phase on the wheat plants treated with LC_(10) and LC_(50) concentrations. CONCLUSION: The results indicate that even low concentrations of neonicotinoid treatments on wheat seeds have long-term, adverse effects on wheat aphid. As such, neonicotinoid seed treatments have far greater effects on wheat aphids than estimated by acute toxicity tests. These results benefit our understanding on the subtle effects of the four tested neonicotinoids when applied as seed treatments.

分类号: S4

  • 相关文献

[1]Effects of cycloxaprid, a novel cis-nitromethylene neonicotinoid insecticide, on the feeding behaviour of Sitobion avenae. Sun, Lina,Yang, Daibin,Yan, Xiaojing,Yuan, Huizhu.

[2]A simple and sensitive electrochemical sensor for new neonicotinoid insecticide Paichongding in grain samples based on beta-cyclodextrin-graphene modified glassy carbon electrode. Zhang, M.,Zhao, H. T.,Yang, X.,Dong, A. J.,Zhang, H.,Wang, J.,Liu, G. Y.,Zhai, X. C.,Zhang, M.,Wang, J..

[3]Toxicities and sublethal effects of seven neonicotinoid insecticides on survival, growth and reproduction of imidacloprid-resistant cotton aphid, Aphis gossypii. Shi, XiaoBin,Jiang, LiLi,Qiao, Kang,Wang, KaiYun,Wang, HongYan,Wang, Dong.

[4]Metal-organic framework preparation using magnetic graphene oxide-beta-cyclodextrin for neonicotinoid pesticide adsorption and removal. Liu, Guangyang,Li, Lingyun,Xu, Donghui,Huang, Xiaodong,Xu, Xiaomin,Zheng, Shuning,Zhang, Yanguo,Lin, Huan. 2017

[5]Biodegradation of neonicotinoid insecticide, imidacloprid by restriction enzyme mediated integration (REMI) generated Trichoderma mutants. He, Xiangfeng,Wubie, Abebe Jenberie,Diao, Qingyun,Li, Wei,Xue, Fei,Guo, Zhanbo,Zhou, Ting,Xu, Shufa,Wubie, Abebe Jenberie.

[6]Combined toxicity of imidacloprid and three insecticides to the earthworm, Eisenia fetida (Annelida, Oligochaeta). Cang, Tao,Yang, Guiling,Lv, Lu,Cai, Leiming,Wang, Qiang,Wang, Yanhua,Dai, Dejiang,Yu, Yijun.

[7]Quantification of toxins in a Cry1Ac+CpTI cotton cultivar and its potential effects on the honey bee Apis mellifera L.. Peng Han,Chang-Ying Niu,Chao-Liang Lei,Jin-Jie Cui,Nicolas Desneux. 2010

[8]Systemic action of novel neonicotinoid insecticide IPP-10 and its effect on the feeding behaviour of Rhopalosiphum padi on wheat. Cui, Li,Sun, Lina,Cao, Yazhong,Yang, Daibin,Yuan, Huizhu,Shao, Xusheng,Li, Zhong.

[9]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.

[10]Sensory variability in Chinese sturgeon in relation to fish feeding experience on formulated diets. Liang, X. -F.,Wen, H.,Wei, Q. -W.,Liang, X. -F.,Wen, H.,Wei, Q. -W.,Xiao, H.,Wen, H.,Wei, Q. -W..

[11]Feeding behaviour of Helicoverpa armigera larvae on insect-resistant transgenic cotton and non-transgenic cotton. Zhang, JH,Wang, CZ,Qin, JD,Guo, SD. 2004

[12]Impact of Wheat-Mung Bean Intercropping on English Grain Aphid (Hemiptera: Aphididae) Populations and Its Natural Enemy. Chen, Ju-Lian,Cheng, Deng-Fa,Zhou, Hai-Bo,Sun, Jing-Rui,Liu, Yong,Francis, Frederic. 2012

[13]Discovery of English grain aphid (Hemiptera: Aphididae) biotypes in China. Chen, Ju-Lian,Cheng, Deng-Fa,Sun, Jing-Rui,Xu, Zhao-Huan,Liu, Yong,Francis, Frederic.

[14]Influence of Garlic Intercropping or Active Emitted Volatiles in Releasers on Aphid and Related Beneficial in Wheat Fields in China. Chen Ju-lian,Sun Jing-rui,Cheng Deng-fa,Zhou Hai-bo,Francis, Frederic,Haubruge, Eric,Liu Yong,Bragard, Claude. 2013

[15]Bacterial symbionts, Buchnera, and starvation on wing dimorphism in English grain aphid, Sitobion avenae (F.) (Homoptera: Aphididae). Li, Xiangrui,Zhang, Yunhui,Cheng, Dengfa,Coates, Brad,Zhou, Xuguo Joe. 2015

[16]The complete mitochondrial genome of Sitobion avenae (Hemiptera: Aphididae). Zhang, Bo,Zheng, Jincheng,Liang, Lina,Ma, Chun-Sen,Fuller, Susan. 2016

[17]Variation in the transmission of barley yellow dwarf virus-PAV by different Sitobion avenae clones in China. Yu, Wenjuan,Cheng, Dengfa,Chen, Julian,Yu, Wenjuan,Francis, Frederic,Xu, Zhaohuan,Bragard, Claude,Liu, Yong. 2013

[18]Watery Saliva Secreted by the Grain Aphid Sitobion avenae Stimulates Aphid Resistance in Wheat. Zhang, Yong,Fan, Jia,Chen, Julian,Zhang, Yong,Francis, Frederic. 2017

[19]Evaluation of extraction procedures for 2-DE analysis of aphid proteins. An Shaoli,Wang Tao,Fang Kui,Zhang Hua,Sun Yu,Yang Xun,Xi Jinghui,Li Kebin.

[20]Detoxification of gramine by the cereal aphid Sitobion avenae. Cai, Qing-Nian,Han, Ying,Hu, Yuan,Zhao, Xin,Cao, Ya-Zhong.

作者其他论文 更多>>