收稿日期: 2015-04-14
网络出版日期: 2015-08-20
基金资助
国家科技重大专项“十二五”课题(2012ZX10004219);“十二五”科教兴卫工程“突发公共卫生事件应急处置创新平台”基金(ZX201109)
The investigation on susceptibility on Armigeres subalbatus to commonly used pesticides in Suqian city, Jiangsu, China
Received date: 2015-04-14
Online published: 2015-08-20
Supported by
Supported by the 12th Five-Year Major National Science and Technology Projects of China(No. 2012ZX10004219)and the 12th Five-Year Innovation Platform for Public Health Emergency Preparedness and Response(No. ZX201109)
目的 了解江苏省宿迁市骚扰阿蚊对常用杀虫剂的敏感性现状。方法 采用浸渍法测定骚扰阿蚊宿迁种群对双硫磷、仲丁威、溴氰菊酯、高效氯氰菊酯和氯菊酯的半数致死浓度(LC50),了解其敏感性情况。结果 骚扰阿蚊宿迁种群对双硫磷、仲丁威、溴氰菊酯、高效氯氰菊酯和氯菊酯的LC50 分别为0.059 36、2.563 5、0.000 457 2、0.000 443 2和0.001 701 mg/L,是淡色库蚊敏感品系对相同杀虫剂LC50的148.40、10.13、0.35、0.12和0.06倍,是同一采集地淡色库蚊宿迁种群对相同杀虫剂LC50的7.24、2.68、0.21、0.09和0.11倍。结论 骚扰阿蚊宿迁种群对有机磷类和氨基甲酸酯类的耐药性程度要高过同一生境同时采集的淡色库蚊宿迁种群,但对拟除虫菊酯类较淡色库蚊宿迁种群更为敏感;宿迁市骚扰阿蚊的防治应采取以环境治理为主,化学防治为辅的综合治理措施;非密度高发期、非蚊媒传染病暴发等重大事件发生期,强调蚊幼虫的防治重于成蚊的防治,且蚊幼虫防治首选拟除虫菊酯类化学杀虫剂或苏云金杆菌(Bt.)、球形芽孢杆菌(Bs.)等生物杀虫剂;当骚扰阿蚊成蚊高密度或蚊媒传染病暴发等重大事件发生时,应加强成蚊的化学防治,同时做到科学合理用药。
杨维芳, 褚宏亮, 吴治明, 崔明花, 刘大鹏, 张育富, 刘慧, 陈红娜, 周明浩 . 江苏省宿迁市骚扰阿蚊对常用杀虫剂的敏感性调查[J]. 中国媒介生物学及控制杂志, 2015 , 26(4) : 366 -368 . DOI: 10.11853/j.issn.1003.4692.2015.04.009
Objective To investigate the susceptibility of Armigeres subalbatus to commonly used pesticides in Suqian city, Jiangsu province. Methods Dipping method was used to detect LC50 of Suqian field population of Ar. subalbatus to abate, fenobucarb, deltamethrin, betacypermethrin and permethrin. Results The LC50(mg/L)of Suqian population of Ar. subalbatus to abate, fenobucarb, deltamethrin, betacypermethrin and permethrin was 0.059 36, 2.563 5, 0.000 457 2, 0.000 443 2 and 0.001 701 respectively, was 7.24, 2.68, 0.21, 0.09, and 0.11 times of LC50 of Suqian population of Cluex pipiens pallens collected from same site on same pesticides. Conclusion Compared with Suqian population of Cx. pipiens pallens, Ar. subalbatus was more resistant to organophosphorus and carbamate pesticides, more susceptible to pyrethroids. IPM was recommended in the control of Ar. subalbatus. Controlling larvae by eliminating of dirty water of vessels and ditches, using pyrethroids or B.t.i. or B. sphaericus biopesticide, were better than controlling adults of Ar. subalbatus, but chemical control on adults of Ar. subalbatus would be the first selection at high vector density or during epidemic period of vector diseases.
Key words: Armigeres subalbatus; Culex pipiens pallens; Susceptibility; Dipping method; LC50
[1] 刘善善. 骚扰阿蚊唾液腺蛋白对免疫细胞的调节作用[D]. 汕头:汕头大学,2012.
[2] 景晓,李兆凰,霍新北,等. 骚扰阿蚊种群动态季节消长观察与分析[J]. 中国公共卫生,2004,20(8):936-937.
[3] Pandian RS, Chandrashekaran MK. Rhythms in the biting behaviour of a mosquito Armigeres subalbatus[J]. Oecologia,1980,47(1):89-95.
[4] 陈东亚,褚宏亮,杨维芳,等. 江苏省部分地区淡色库蚊幼虫对7种杀虫剂的抗药性研究[J]. 中国媒介生物学及控制杂志,2010,21(5):432-433.
[5] 景晓,常树珍,霍新北,等. 骚扰阿蚊种群动态变化环境因子数学模型的建立[J]. 中华卫生杀虫药械,2011,17(5):366-368,370.
[6] 景晓,霍新北,李兆凰,等. 骚扰阿蚊叮刺周环及其影响因素的观察与分析[J]. 中国媒介生物学及控制杂志,2005,16(1):29-31.
[7] 郑雅匀. 我国山西、河南虫媒病毒调查及西藏新分离环状病毒分子进化遗传分析[D]. 济南:山东大学,2014.
[8] 金永昌,胡家官,杨中清,等. 5种杀虫剂对骚扰阿蚊幼虫的毒效[J]. 中国媒介生物学及控制杂志,1990,1(2):77.
[9] 陆宝麟. 蚊虫的综合防治[J]. 昆虫学报,1978,21(2):217-232.
[10] Cailly P,Tran A,Balenghien T,et al. A climate-driven abundance model to assess mosquito control strategies[J]. Ecol Mod,2012,227:7-17.
/
| 〈 |
|
〉 |