Chinese Journal of Vector Biology and Control >
Spinosad and mechanism of its resistance
Received date: 2015-04-13
Online published: 2015-08-20
This paper describes the current status of resistance in insects to spinosad, and summarizes spinosad resistance mechanism from the aspects of physiological and biochemical mechanism, as well as molecular implication. The resistance mechanism of insects to spinosad, however, remains unclear. It is very important to study the mechanism and delay the insects'development of resistance to spinosad.
WANG Yan-yan, MENG Feng-xia, GAO Xi-wu . Spinosad and mechanism of its resistance[J]. Chinese Journal of Vector Biology and Control, 2015 , 26(4) : 431 -432 . DOI: 10.11853/j.issn.1003.4692.2015.04.031
[1] Sayyed AH,Omar D,Wright DJ. Genetics of spinosad resistance in a multi-resistant field-selected population of Plutella xylostella[J]. Pest Manag Sci,2004,60(8):827-832.
[2] Osoria A,Martinez AM,Schneider MI,et al. Monitoring of beet armyworm resistance to spinosad and methoxyfenozide in Mexico[J]. Pest Manag Sci,2008,64(10):1001-1007.
[3] 郭世俭,林文彩,章金明. 浙江省主要菜区小菜蛾抗药性的研[J]. 浙江农业学报,2003,15(1):19-22.
[4] 李腾武,高希武,郑炳宗,等. 阿维菌素对小菜蛾的抗性选育其对解毒酶活性的影响[J]. 昆虫学报,2000,43 增刊: 38-43.
[5] 王泽华,吴青君,徐宝云,等. 西花蓟马对多杀菌素的抗性汰和遗传方式[J]. 应用昆虫学报,2011,48(3):553-558.
[6] 朱剑翔,武淑文,杨亦桦,等. 小菜蛾对多杀菌素的抗性筛选遗传方式分析[J]. 南京农业大学学报,2007,30(1): 61-65.
[7] Shono T,Scott JG. Spinosad resistance in the housefly,Musca domestica,is due to a recessive factor on autosome 1[J]. Pestic Biochem Phys,2003,75(1/2):1-7.
[8] Wang W,Mo JC,Cheng JA,et al. Selection and characterization of spinosad resistance in Spodoptera exigua (Hübner) (Lepidoptera:Noctuidae)[J]. Pestic Biochem Phys,2006,84 (3):180-187.
[9] Hsu JC,Feng HT. Development of resistance to spinosad in oriental fruit fly (Diptera: Tephritidae) in laboratory selection and cross-resistance[J]. J Econ Entomol,2006,99(3):931-936.
[10] 侯文杰,李飞,吴青君,等. 西花蓟马对多杀菌素的抗性生化制研究[J]. 应用昆虫学报,2013,50(4):1042-1048.
[11] Bielza P,Quinto V,Fernandez E,et al. Genetics of spinosad resistance in Frankliniella occidentalis (Thysanoptera: Thripidae)[J]. J Econ Entomol,2007,100(3):916-920.
[12] 石晶. 家蝇对高效氯氰菊酯抗性发育期变化、适合度代偿和杀菌素抗性遗传[D]. 北京:中国农业大学,2010.
[13] 魏辉,李洪山,戴华国,等. 多杀菌素对小菜蛾体内多功能氧酶和保幼激素酯酶活力的影响[J]. 农药学学报,2006,8 (3):239-244.
[14] Reyes M,Franck R,Charmillot PJ,et al. Diversity of insecticide resistance mechanisms and spectrum in European populations of the codling moth,Cydia pomonella[J]. Pest Manag Sci,2007,63 (9):890-902.
[15] 秦文,高菊芳. 多杀菌素类杀虫剂的抗性与交互抗性[J]. 世农药,2013,35(4):16-22.
[16] Watson GB. Actions of insecticidal spinosyns on γ-Aminobutyric acid responses from small - diameter cockroach neurons[J]. Pestic Biochem Phys,2001,71(1):20-28.
[17] Perry T,McKenzie JA,Batterham P. A Dα6 knockout strain of Drosophila melanogaster confers a high level of resistance to spinosad[J]. Insect Biochem Mol Biol,2007,37(2):184-188.
[18] Gao JR,Deacutis JM,Scott JG. The nicotinic acetylcholine receptor subunit Md α 6 from Musca domestica is diversified via post-transcriptional modification[J]. Insect Mol Biol,2007,16 (3):325-334.
[19] 刘泽文,张懿熙,姚香梅,等. 褐飞虱对吡虫啉的抗性机理和标分子毒理学[J]. 昆虫学报,2010,53(6):683-688.
[20] Perry T,Heckel DG,McKenzie JA,et al. Mutations in Dα1 or Dβ2 nicotinic acetylcholine receptor subunits can confer resistance to neonicotinoids in Drosophila melanogaster[J]. Insect Biochem Mol Biol,2008,38(5):520-528.
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