首页> 外文期刊>Ecotoxicology >Selective toxicity of the mesoionic insecticide, triflumezopyrim, to rice planthoppers and beneficial arthropods
【24h】

Selective toxicity of the mesoionic insecticide, triflumezopyrim, to rice planthoppers and beneficial arthropods

机译:中毒性杀虫剂,Triflumezopyrim,水稻植物和有益节肢动物的选择性毒性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The novel mesoionic insecticide triflumezopyrim was highly effective in controlling both imidacloprid-susceptible and resistant planthopper populations in Malaysia. However, the toxicity of triflumezopyrim to planthopper populations and their natural enemies has been under-investigated in China. In this study, the median lethal concentrations (LC~(50)) of triflumezopyrim were determined in eight field populations of Nilaparvata lugens and one population of Sogatella furcifera from China under laboratory conditions. Triflumezopyrim showed higher toxicity to planthopper populations than the commonly-used insecticide, imidacloprid. Furthermore, the lethal effect of triflumezopyrim on eight beneficial arthropods of planthoppers was investigated in the laboratory and compared with three commonly-used insecticides, thiamethoxam, chlorpyrifos and abamectin. Triflumezopyrim was harmless to Anagrus nilaparvatae , Cyrtorhinus lividipennis and Paederus fuscipes , while thiamethoxam, chlorpyrifos and abamectin were moderately harmful or harmful to the insect parasitoid and predators. Triflumezopyrim and thiamethoxam were harmless to the predatory spiders Pirata subpiraticus , Ummeliata insecticeps , Hylyphantes graminicola and Pardosa pseudoannulata , and slightly harmful to Theridion octomaculatum . Chlorpyrifos caused slight to high toxicity to four spider species except U. insecticeps . Abamectin was moderately to highly toxic to all five spider species. Our results indicate that triflumezopyrim has high efficacy for rice planthoppers populations and is compatibile with their natural enemies in China.
机译:新型中硫酸杀虫剂Triflumezopyrim在控制马来西亚的含吡虫啉和耐药性抗胰岛舱血液中的有效性非常有效。然而,在中国遭到了在中国进行了Triflumezopymyrim对Planthopper种群的毒性。在这项研究中,在实验室条件下,在Nileaparvata Lugens的八个野外群中,在Nileaparvata Lugens和Sogatella Furcifera的八个野外群中测定了Triflumezopyrem的中值浓度(LC〜(50))。 Triflumezopyrim对Planthopper群体的毒性高于普通使用的杀虫剂,ImidaCloprid。此外,在实验室研究了Triflumezopyrim对Traiflumezopyrim对Planthoppers的八个有益节肢动物的致命作用,并与三种常用的杀虫剂,祖紫红氧肟,紫染素相比。 Triflumezopyrim对Anagrus Nileaparvatae,Cyrtorhinus Lividipennis和Paeederus Fuscipes无害,而硫昔洛昔姆,喉毒素和Aphamectin对昆虫寄生虫和捕食者具有适度的有害或有害。 Triflumezopyrim和硫昔昔姆对掠食性蜘蛛Pirata Subpiraticus,ummeliata虫害,骨质蛋白葡萄兰菌和Pardosa假年脉,并对Theridion Octomaculum略有危害。除U. Oisphiceps之外,紫外紫外多毒素对四个蜘蛛物种引起的略微毒性。 Abamectin适度以对所有五个蜘蛛物种的毒性高。我们的研究结果表明,Triflumezopyrim对水稻Planthoppers人群的疗效高,并与中国的自然敌人相容。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号