首页> 外文期刊>Experimental and Applied Acarology >Toxicity of bifenazate and its principal active metabolite, diazene, to Tetranychus urticae and Panonychus citri and their relative toxicity to the predaceous mites, Phytoseiulus persimilis and Neoseiulus californicus
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Toxicity of bifenazate and its principal active metabolite, diazene, to Tetranychus urticae and Panonychus citri and their relative toxicity to the predaceous mites, Phytoseiulus persimilis and Neoseiulus californicus

机译:联苯吡唑及其主要活性代谢物重氮对四叶螨和柠檬泛鱼的毒害及其对前螨,百草枯草和新孢子虫的相对毒性

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摘要

Bifenazate is a novel carbazate acaricide discovered by Uniroyal Chemical (now Chemtura Corporation) for the control of phytophagous mites infesting agricultural and ornamental crops. Its acaricidal activity and that of its principal active metabolite, diazene, were characterized. Bifenazate and diazene had high toxicity and specificity both orally and topically to all life stages of Tetranychus urticae and Panonychus citri. Acute poisoning was observed with no temperature dependency. No cross-resistance was found to mites resistant to several other classes of acaricides, such as tebufenpyrad, etoxazole, fenbutatin oxide and dicofol. Bifenazate remained effective for a long time with only about a 10% loss of efficacy on T. urticae after 1 month of application in the field. All stages of development of the predatory mites, Phytoseiulus persimilis and Neoseiulus californicus, survived treatment by both bifenazate and diazene. When adult females of the two predatory mite species were treated with either bifenazate or diazene, they showed a normal level of fecundity and predatory activity in the laboratory, effectively suppressing spider mite population growth. Even when the predators were fed spider mite eggs that had been treated previously with bifenazate, they survived. These findings indicate that bifenazate is a very useful acaricide giving high efficacy, long-lasting activity and excellent selectivity for spider mites. It is, therefore, concluded that bifenazate is an ideal compound for controlling these pest mites.
机译:Bifenazate是一种由Uniroyal Chemical(现为Chemtura Corporation)发现的新型氨基甲酸酯类杀螨剂,用于控制侵染农作物和观赏作物的植食性螨。对其杀螨活性及其主要活性代谢物重氮进行了表征。联苯双酸盐和重氮对口蹄疫和柠檬三叶草的所有生命阶段均具有口服和局部高毒性和特异性。观察到急性中毒,与温度无关。没有发现对其他几种杀螨剂(例如tebufenpyrad,etoxazole,fenfenatin氧化和三氯杀螨醇)具有抗性的螨的交叉抗性。在田间施用1个月后,联苯肼酯长期保持有效,对荨麻疹的功效仅损失约10%。捕食性螨类植物拟南芥和新孢子虫的所有发育阶段都可以通过联苯双酯和重氮治疗幸免。当用联苯那唑或重氮处理这两种捕食性螨类的成年雌性时,它们在实验室中显示出正常的繁殖力和捕食活性,有效地抑制了红蜘蛛种群的增长。甚至当捕食者被喂食过用联苯那唑处理过的红蜘蛛卵时,它们仍然存活。这些发现表明联苯吡唑酯是非常有用的杀螨剂,对蜘蛛螨具有高效力,持久活性和优异的选择性。因此,得出的结论是联苯芬酯是控制这些害虫的理想化合物。

著录项

  • 来源
    《Experimental and Applied Acarology》 |2007年第3期|181-197|共17页
  • 作者单位

    Graduate School of Science and Technology Kobe University Nada Kobe 657-8501 Japan;

    Biological Research Laboratories Nissan Chemical Industries Ltd Shiraoka Minamisaitama Saitama 349-0294 Japan;

    Biological Research Laboratories Nissan Chemical Industries Ltd Shiraoka Minamisaitama Saitama 349-0294 Japan;

    Biological Research Laboratories Nissan Chemical Industries Ltd Shiraoka Minamisaitama Saitama 349-0294 Japan;

    Chemtura Canada Co./Cie Guelph Technology Centre 120 Huron St Guelph ON Canada N1E 5L7;

    Graduate School of Science and Technology Kobe University Nada Kobe 657-8501 Japan;

    Graduate School of Science and Technology Kobe University Nada Kobe 657-8501 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bifenazate; Diazene; Tetranychus; Panonychus; Phytoseiulus; Neoseiulus;

    机译:联苯甲酸盐;重氮;四联y;P药;植物小孢子;新孢子虫;
  • 入库时间 2022-08-17 13:11:03

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