研究报告

Insecticide Resistance Monitoring of Chilo suppressalis in the Drainage Area of the Yangtze River, China

Expand
  • 1Key Laboratory of Monitoring and Management of Plant Diseases and Insects, Ministry of Agriculture/Department of Pesticide Science, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China;2 Chinaredsun Company, Nanjing 211303, China; *Corresponding author, E-mail: jlshen@njau.edu.cn

Received date: 1900-01-01

  Revised date: 1900-01-01

  Online published: 2010-09-10

Abstract

Seventeen populations of Chilo suppressalis Walker were collected from the drainage area of the Yangtze River, including Zhejiang, Jiangsu, Anhui, Hubei, Hunan, Sichuan, and Henan Provinces, China and the resistance of the populations to monosultap, triazophos, chlorpyrifos, fipronil, and abamectin was monitored using topical application in 2008 and 2009. The resistance levels of the 17 populations to the five insecticides varied with the collection regions. The populations from Cangnan, Rui′an, Jiangshan in southern Zhejiang Province (highlevel resistance region) developed extremely high to high level resistance to monosultap (resistance ratio was 43.2 to 177.0fold), triazophos (238.7 to 728.1fold), and chlorpyrifos (31.7 to 57.8fold). At the same time, they had moderate or low level resistance to fipronil (11.2 to 24.7fold) and abamectin (5.9 to 7.1fold) which were widely used in recent years. The populations from Lujiang (Anhui Province), Youxian (Hunan Province) and Gaochun (Jiangsu Province) (moderatelevel resistance region) had extremely high level resistance to triazophos (203.2 to 379.0fold), high to moderate level resistance to monosultap (18.3 to 48.8fold) and chlorpyrifos (29.8fold), and low susceptibility to fipronil (4.4fold) and abamectin (4.1 to 4.7fold). The populations from Yizheng (Jiangsu Province), Hexian (Anhui Province)(low resistance region) showed high level resistance to chlorpyrifos (45.2fold) and triazophos (50.0fold), but moderate level resistance to susceptibility to the other insecticides. The populations from Xinyang (Henan Province), Lianyungang (Jiangsu Province) and Wusheng (Sichuan Province) (susceptibility region) displayed low susceptibility or susceptibility to most of the tested insecticides except monosultap. It is suggested that insecticide resistance management should be based on the local situation of insecticide resistance of C. suppressalis.

Cite this article

HU Jun,CHEN Wen-ming,ZHANG Zhen-zhen,ZHENG Xue-song,JIN Jian-chao,SU Jian-ya,GAO Cong-fen,SHEN Jin-liang . Insecticide Resistance Monitoring of Chilo suppressalis in the Drainage Area of the Yangtze River, China[J]. Chinese Journal OF Rice Science, 2010 , 24(5) : 509 -515 . DOI: 10.3969/j.issn.1001-7216.2010.05.011

References

[1]苏建坤, 刘怀阿, 徐健, 等.江苏里下河地区水稻二化螟抗药性监测.南京农业大学学报, 1996, 19(增):28-33.
[2]蒋学辉, 章强华, 胡仕孟, 等.浙江省水稻二化螟抗药性现状与治理对策.植保技术与推广, 2001, 21(3):27-29.
[3]曹明章, 沈晋良, 张金振, 等.二化螟抗药性监测和对三唑磷抗性的遗传分析.中国水稻科学, 2004, 18(1):73-79.
[4]曹明章.二化螟抗药性监测、对三唑磷和杀虫单抗性遗传分析及对氟虫腈抗性风险评估.南京:南京农业大学, 2004.
[5]曹明章, 沈晋良, 张绍明, 等.2002年江苏省二化螟抗药性检测及治理.植物保护, 2003, 29(5):34-37.
[6]曹明章, 沈晋良, 张金振, 等.二化螟抗药性监测和对三唑磷抗性的遗传分析.中国水稻科学, 2004, 18(1):73-79.
[7]He Y P, Gao C F, Cao M Z, et al. Survey of susceptibilities to monosultap, triazophos, fipronil, and abamectin in Chilo suppressalis (Lepidoptera: Crambidae). J Econ Entomol, 2007, 100(6):1854-1861.
[8]陈文明, 胡君, 何月平, 等.2007年江浙地区二化螟抗药性检测.中国农业科学, 2009, 42(3):1100-1107.
[9]吕亮, 陈其志, 张舒, 等.湖北省水稻二化螟和三化螟的抗药性监测.华中农业大学学报, 2008, 27(2):213-216.
[10]何月平.二化螟抗药性监测及治理与高毒农药替代药剂筛选研究[D].南京:南京农业大学, 2008.
[11]尚稚珍, 王银淑, 邹永华.二化螟饲养方法的研究.昆虫学报, 1979, 22(2):164-167.
[12]FAO. Method for larvae of the rice stem borer(Chilo suppressalis Walker), FAO Method NO.3//Pest Resistance to Pesticides and Crop Loss Assessment-2. Rome: FAO, 1980:25-28.
[13]谭福杰.农业害虫抗药性测定方法.南京农业大学学报, 1987, 4(增):107-122.
[14]沈晋良, 谭建国, 肖斌, 等.我国棉铃虫对拟除虫菊酯类农药的抗性监测及预报.昆虫知识, 1991, 28(6):337-341.
[15]Roush R T, Daly J C. The role of population genetics in resistance research and management//Roush R T, Tabashnik B E. Pesticide Resistance in Arthropods. New York:Chapman & Hall, 1990:97-152.
[16]Palumbi S R. Humans as the worlds greatest evolutionary force. Science, 2001, 293: 1786-1790.
[17]Qu M J, Han Z J, Xu X J, et al. Triazophos resistance mechanisms in rice stem borer (Chilo suppressalis Walker).Pestic Biochem Physiol, 2003, 77: 99-105.
[18]Konno Y, Shishido T. Resistance mechanism of the rice stem borer to organophosphorus insecticides. J Pestic Sci, 1985, 10: 285-287.
[19]李秀峰, 韩召军, 陈长琨, 等.二化螟对杀虫单等4种杀虫剂的抗药性.南京农业大学学报, 2001, 24(1):43-46.
[20] 赵学平, 王强, 吴长兴, 等.二化螟对杀虫剂的敏感性及抗药性研究.浙江农业学报, 2000, 12(6):382-386.
[21] 罗浑金, 李梅, 傅童生, 等.拟除虫菊酯抗性家蝇的交互抗性研究.生物技术通报, 2007(5):141-143.
[22]吴青君, 张文吉, 张友军, 等.小菜蛾对阿维菌素的抗性选育及交互抗性研究.植物保护学报, 2002, 29(3):239-242.
[23]Li X T, Huang Q C, Yuan J Z, et al. Fipronil resistance mechanisms in the rice stem borer, Chilo suppressalis Walker. Pestic Biochem Physiol, 2007, 89:169-174.
Outlines

/

Tel: 0571-63370278 E-mail: cjrs@263.net
Supported by Beijing Magtech Co., Ltd.