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噻虫胺等七种杀虫剂对黄曲条跳甲的毒力
引用本文:郑岩明,刘霞,姜莉莉,乔康,左一鸣,王开运.噻虫胺等七种杀虫剂对黄曲条跳甲的毒力[J].农药学学报,2015,17(2):230-234.
作者姓名:郑岩明  刘霞  姜莉莉  乔康  左一鸣  王开运
作者单位:1.山东农业大学 植物保护学院, 山东 泰安 271018
摘    要:采用浸叶法测定了噻虫胺、高效氯氟氰菊酯等7种药剂及其混用对黄曲条跳甲的毒力及增效作用。结果显示:7种药剂中噻虫胺对黄曲条跳甲的毒力最高,LC50值为315.1 mg/L,其毒力倍数是呋虫胺的3.23倍;其次为噻虫嗪和高效氯氟氰菊酯,LC50值分别为473.1和543.1 mg/L。噻虫胺与高效氯氟氰菊酯按5∶5、4∶6、3∶7、2∶8和1∶9的质量比混用,其LC50值分别是215.6、307.1、334.1、232.6和240.7 mg/L,均表现为增效作用,其中2∶8和1∶9混用的共毒系数分别达203.9和210.5,增效最显著;噻虫胺与丁烯氟虫腈按5∶5、4∶6、3∶7、2∶8和1∶9的比例混用,其LC50值分别为409.2、356.9、338.1、402.4和392.6 mg/L,除5∶5混用表现为相加作用外,其余配比均表现为增效作用,其中1∶9混用共毒系数为182.1,增效显著;噻虫胺与杀虫单按5∶5、4∶6、3∶7、2∶8和1∶9的比例混用,其LC50值分别为479.4、540.0、454.8、737.0和878.7 mg/L,其中3∶7混用的共毒系数为127.9,有明显的增效作用,其余配比均表现为相加作用。噻虫胺与高效氯氟氰菊酯、丁烯氟虫腈、杀虫单混用增效作用明显,可以作为防治黄曲条跳甲的高效药剂。

关 键 词:黄曲条跳甲    噻虫胺    高效氯氟氰菊酯    丁烯氟虫腈    杀虫单    毒力    增效作用
收稿时间:2014/12/2 0:00:00

Toxicity of clothianidin and other insecticides to Phyllotreta striolata
Zheng Yanming,Liu Xi,Jiang Lili,Qiao Kang,Zuo Yiming and Wang Kaiyun.Toxicity of clothianidin and other insecticides to Phyllotreta striolata[J].Chinese Journal of Pesticide Science,2015,17(2):230-234.
Authors:Zheng Yanming  Liu Xi  Jiang Lili  Qiao Kang  Zuo Yiming and Wang Kaiyun
Institution:1.College of Plant Protection, Shandong Agricultural University, Tai'an 271018, Shandong Province, China2.Import and Export Inspection and Quarantine Bureau of Tai'an, Tai'an 271000, Shandong Province, China
Abstract:The toxicity and synergistic effects of seven insecticides and their mixtures to Phyllotreta striolata were tested by leaf-dipping method. The results showed that the toxicity of clothianidin was the highest, with LC50 value of 315.1 mg/L, and the toxicity ratio was 3.23-fold higher than that of dinotefuran. Thiamethoxam and lambda-cyhalothrin also had high toxicity to P. striolata, with LC50 values of 473.1 and 543.1 mg/L, respectively. The mixtures of clothianidin and lambda-cyhalothrin with ratios of 5:5, 4:6, 3:7, 2:8, 1:9 showed synergistic effects on P. striolata, with LC50 values of 215.6, 307.1, 334.1, 232.6, 240.7 mg/L, respectively, among which the 2:8 and 1:9 group showed the highest synergism, with co-toxicity coefficient of 203.9 and 210.5 respectively. Clothianidin and butene-fipronil mixed at the ratios of 5:5, 4:6, 3:7, 2:8 and 1:9 exhibited LC50values of 409.2, 356.9, 338.1, 402.4 and 392.6 mg/L, respectively, indicating most groups showed synergism against P. striolata except that of 5:5, and among which the 1:9 group showed the highest synergistic effect, with co-toxicity coefficient of 182.1. When the mixed ratios of clothianidin and monosultap were 5:5, 4:6, 3:7, 2:8, 1:9, the LC50values were 479.4, 540.0, 454.8, 737.0, 878.7 mg/L, respectively; the mixture at ratio of 3:7 showed synergism effect, with co-toxicity coefficient of 127.9, while others showed additive effects. The mixtures of clothianidin and lambda-cyhalothrin, butene-fipronil and monosultap, respectively, showed high synergism against P. striolata, suggesting they could be used to control the pest.
Keywords:Phyllotreta striolata  clothianidin  lambda-cyhalothrin  butene-fipronil  monosultap  toxicity  synergistic effect
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