Resistance surveillance of adult Musca domestica in Zhejiang province in 2017

Expand
  • Zhejiang Center for Disease Control and Prevention, Hangzhou 310051, Zhejiang Province, China

Received date: 2018-02-24

  Online published: 2018-08-20

Supported by

Supported by the Medical Research Program of Zhejiang Province(No. 2015RCA005)

Abstract

Objective To investigate the resistance status of adults Musca domestica to 6 commonly used insecticides in Zhejiang province, providing scientific basis for its prevention and control. Methods We collected adult M. domestica from 12 monitoring sites in Huzhou, Jiaxing, Shaoxing, Taizhou, Yiwu, Lishui, Zhoushan, Quzhou, Wenzhou, Jinhua, Hangzhou, and Ningbo during May and October in 2017, and brought them back to the insectary. Topical application method was used to determine the resistance of M. domestica to 6 commonly used insecticides in 12 cities of Zhejiang province. Results The LD50 values of the twelve monitoring points to beta-cypermethrin, deltamethrin, permethrin, DDVP, propoxur were 0.003 0-3.281 8, 0.005 1-0.262 6, 0.003 1-0.425 3, 0.010 0-40.409 2, and 0.044 7->160.000 0 μg/♀, and the resistance ratio were 0.8-911.6, 3.6-291.8, 6.3-39.4, 1.4-892.0, and 1.9->538.2 fold. The LD50 values of the Hangzhou population to acetofenate was 1.547 8 μg/♀, the resistance ratio was 7.2 fold. Conclusion The adult M. domestica of most monitoring points have been resistant to commonly used insecticides. In practice, insecticides resistance surveillance should be highlighted, and insecticides should be used scientifically and rationally to prevent and reduce the occurrence and development of resistance.

Cite this article

HOU Juan, WANG Jin-na, GUO Song, WU Yu-yan, GONG Zhen-yu . Resistance surveillance of adult Musca domestica in Zhejiang province in 2017[J]. Chinese Journal of Vector Biology and Control, 2018 , 29(4) : 348 -350 . DOI: 10.11853/j.issn.1003.8280.2018.04.006

References

[1] 吴瑜燕,龚震宇,侯娟,等.浙江省2011-2013年病媒生物监测结果分析[J].中国媒介生物学及控制杂志,2015,26(4):394-397.DOI:10.11853/j.issn.1003.4692.2015.04.017.
[2] 陈丹,庄桂芬,黄振东,等.不同养殖场家蝇成虫体表携带细菌的分离与鉴定[J].中国人兽共患病学报,2017,33(11):951-955.DOI:10.3969/j.issn.1002-2694.2017.11.001.
[3] 杨茜,张亮,杨迅,等.贵阳市家蝇对拟除虫菊酯类杀虫剂的抗性现状与kdr(L1014F)等位基因频率分析[J].寄生虫与医学昆虫学报,2016,23(4):218-223.DOI:10.3969/j.issn.1005-0507.2016.04.005.
[4] 李树双,刘振荣,项东,等.河北省唐山市家蝇抗性水平调查[J].医学动物防制,2017,33(2):207-208.
[5] 刘开林,董大萍.湖北省1991-1998年家蝇抗性监测结果分析[J].中国媒介生物学及控制杂志,2001,12(5):345-346.DOI:10.3969/j.issn.1003-4692.2001.05.008.
[6] 刘维,彭渤,郭建华,等.吉林省不同地区家蝇对3种杀虫剂的抗药性调查[J].中国卫生工程学,2016,15(5):473-475.
[7] 吕文,霍丽霞,孙养信.陕西省不同地区家蝇抗药性调查[J].中国媒介生物学及控制杂志,2012,23(4):314-316.
[8] 罗直智,姜辉,王晶,等.扬州城区家蝇对常用化学杀虫剂抗药性15年前后变化研究[J].医学动物防制,2013,29(4):412,416.
[9] 苏庆盛,罗林峰,林琳,等.深圳市德国小蠊和家蝇对常用杀虫剂的抗性研究[J].现代预防医学,2014,41(4):698-699, 703.
[10] 李今越,刘起勇,张静,等.天津市家蝇对常用杀虫剂抗药性调查及趋势分析[J].中国媒介生物学及控制杂志,2014,25(4):326-329.DOI:10.11853/j.issn.1003.4692.2014.04.011.
[11] 徐正龙,李凯,张超,等.2012年张家港市家蝇对杀虫剂的抗药性调查[J].中华卫生杀虫药械,2014,20(1):71-72.
[12] 邓同锋.商丘市区卫生杀虫剂使用状况及蚊蝇抗药性研究[J].中华卫生杀虫药械,2014,20(3):264-266.
[13] 黄志光,鲜军,胡俊,等.我国家蝇对常用杀虫剂的抗性现状分析[J].中华卫生杀虫药械,2015,21(3):306-308,313.
[14] 吕锡宏,费胜军,许海根,等.上海市松江区家蝇对5种杀虫剂的抗性测定及分析[J].医学动物防制,2015,31(4):365-367.
[15] 王冲,熊丽林,葛明.南京市常用杀虫剂家蝇抗性调查[J].江苏卫生保健,2012,14(6):1-2.DOI:10.3969/j.issn.1008-7338.2012.06.001.
[16] 徐薇,姜洪方,刘玉红,等.镇江市家蝇抗药性调查[J].中华卫生杀虫药械,2013,19(1):64-65.
[17] 冷培恩,王明福,莫建初,等.蝇类防制工作进展与发展展望[J].中国媒介生物学及控制杂志,2015,26(3):217-222,227.
[18] 侯娟,龚震宇,凌锋,等.2011年浙江省蝇类种群、密度及家蝇抗药性研究[J].中国媒介生物学及控制杂志,2012,23(6):539-541.

Outlines

/