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The susceptibility of a cereal aphid pest and its natural enemies to Deltamethrin

机译:谷类蚜虫及其天敌对溴氰菊酯的易感性

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AbstractThe intrinsic toxicity of deltamethrin to the grain aphidSitobion avenae(F.) (Hemiptera: Aphididae) and a range of its important natural enemies was determined by laboratory topical bioassay. The natural enemies included polyphagous predators such asPterostichus melanarius(Illiger),Harpalus rufipes(Degeer),Nebria brevicollis(F.),Agonum dorsale(Pont.),Demetrias atricapillus(L.),Trechus quadristriatus(Schrank),Bembidion obtusum(Serville), andB. lampros(Herbst.) (Coleoptera: Carabidae),Tachyporus hypnorum(F.) (Coleoptera: Staphylinidae) andErigone atra(Blackwall) (Araneae: Linyphiidae), as well as the aphid‐specific ladybirdCoccinella septempunctata(L.) (Coleoptera: Coccinellidae). Dose–response relationships were compared between species by probit analysis and maximum likelihood procedures to determine trends of susceptibility, measured in terms of ng a.i. arthropod−1and μg a.i. g−1body weight. The range of LD50values varied between 0.8 and 232 ng arthropod−1and 0.76 and 66.17 μg g−1body weight for the species tested. The linyphiid spiderE. atra(♀) was the most intrinsically susceptible species and had the narrowest tolerance distribution of the predators tested, whereas the small carabid beetleD. atricapilluswas the least intrinsically susceptible predator species. There were significant differences in susceptibility between species of different orders, i.e. the Araneae, Hemiptera and Coleoptera. Differences within the Coleoptera were closely related to body weight, with the exception of the carabid beetleD. atricapillus, which seemed to be tolerant to deltamethrin. Knockdown time studies indicated thatD. atricapillushad a higher survival rate after being knocked down than other species of predator. Aphid susceptibility per unit body weight was not significantly different from that of the predators. The aphid did, however, demonstrate a broader tolerance distribution than most of the predators, which may be related to its herbivorous nature. The use of laboratory susceptibility data to determine selectivity and to predict pesticide haza
机译:摘要采用实验室外用生物测定法测定了溴氰菊酯对籽粒蚜虫(半翅目:蚜虫科)及其一系列重要天敌的内在毒性。天敌包括多食性捕食性动物,如Pterostichus melanarius(Illiger)、Harpalus rufipes(Degeer)、Nebria brevicollis(F.)、Agonum dorsale(Pont.)、Demetrias atricapillus(L.)、Trechus quadristriatus(Schrank)、Bembidion obtusum(Serville)和B。兰普罗斯(Herbst.)(鞘翅目:Carabidae)、Tachyporus hypnorum(F.)(鞘翅目:Staphylinidae)和Erigone atra(Blackwall)(Araneae:Linyphiidae),以及蚜虫特有的瓢虫Coccinella septempunctata(L.)(鞘翅目:Coccinellidae)。通过概率分析和最大似然法程序比较物种之间的剂量-反应关系,以确定易感性趋势,以 ng a.i. 节肢动物 - 1 和 μg a.i. g-1 体重衡量。LD50值的范围在0.8至232 ng节肢动物−1和0.76至66.17 μg g−1体重之间变化。linyphiid 蜘蛛 E.atra(♀)是本质上最易感的物种,在测试的捕食者中具有最窄的耐受性分布,而小型甲虫D.Atricapillus是本质上最不易感染的捕食者物种。不同目物种(Araneae、半翅目和鞘翅目)的易感性存在显著差异。鞘翅目内的差异与体重密切相关,但甲虫除外。Atricapillus,似乎对溴氰菊酯有耐受性。敲低时间研究表明,D.Atricapillus在被击倒后比其他种类的捕食者具有更高的存活率。单位体重蚜虫易感性与捕食者无显著差异。然而,蚜虫确实表现出比大多数捕食者更广泛的耐受性分布,这可能与其食草性质有关。使用实验室药敏数据确定选择性并预测农药危害

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