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首页> 外文期刊>Journal of Economic Entomology >Fumigant Toxicity of Phenylpropanoids Identified in Asarum sieboldii Aerial Parts to Lycoriella ingenua (Diptera: Sciaridae) and Coboldia fuscipes (Diptera: Scatopsidae)
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Fumigant Toxicity of Phenylpropanoids Identified in Asarum sieboldii Aerial Parts to Lycoriella ingenua (Diptera: Sciaridae) and Coboldia fuscipes (Diptera: Scatopsidae)

机译:细叶细辛细部植物中鉴定出的苯丙烷类化合物对毒蛾科(Diptera:Sciaridae)和Coboldia fuscipes(Diptera:Scatopsidae)的熏蒸毒性。

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Lycoriella ingenua (Dufour) (Diptera: Sciaridae) and Coboldia fuscipes (Meigen) (Diptera: Scatopsidae) are two of the most economically important insect pests of cultivated mushrooms. The toxicities to the fly larvae of the three phenylpropanoids (methyleugenol, myristicin, and safrole) from aerial parts of Asarum sieboldii Miquel (Aristolochiaceae) were compared with those of the currently available carbamate insecticide benfuracarb. In a contact + fumigant mortality bioassay with L. ingenua and C. fuscipes larvae, methyleugenol (1.46 and 2.33 A mu g/cm(2)) was the most toxic compound, followed by safrole (2.03 and 2.59 A mu g/cm(2)) and myristicin (3.59 and 4.96 A mu g/cm(2)), based on 24-h LC50 values. The phenylpropanoids were less toxic than benfuracarb (LC50, 0.75 and 0.55 A mu g/cm(2)). In vapor-phase mortality tests with the larvae, the phenylpropanoids were consistently more toxic in closed versus open containers, indicating that the effect of the compounds was largely a result of vapor action. Global efforts to reduce the level of highly toxic synthetic insecticides in the agricultural environment justify further studies on A. sieboldii plant-derived products as potential fumigants for the control of mushroom fly populations in mushroom houses and mushroom compost.
机译:栽培杜鹃(Difourera)(双翅目:Sciaridae)和粉虱(Coboldia fuscipes)(Meigen)(双翅目:Scatopsidae)是栽培蘑菇中最重要的两种经济害虫。将细辛细辛(Asarum sieboldii Miquel)(马兜铃科)的地上部分的三种苯基丙烷类化合物(甲基丁香酚,肉豆蔻苷和黄樟脑)对蝇类幼虫的毒性与目前可用的氨基甲酸酯杀虫剂苯呋喃威的毒性进行了比较。在L. ingenua和C.fuscipes幼虫的接触+熏蒸死亡率生物测定中,甲基丁香酚(1.46和2.33 Aμg / cm(2))是毒性最高的化合物,其次是黄樟脑(2.03和2.59 Aμg / cm(2))。 2))和myristicin(3.59和4.96 Aμg / cm(2)),基于24小时LC50值。苯丙烷类化合物的毒性比苯呋卡威低(LC50、0.75和0.55 Aμg / cm(2))。在幼虫的气相死亡率测试中,与封闭的容器相比,苯丙烷类化合物在密闭容器中的毒性始终较高,这表明化合物的作用很大程度上是蒸气作用的结果。为减少农业环境中高毒性合成杀虫剂的水平而进行的全球努力证明,对作为植物潜在的熏蒸剂来控制蘑菇屋和蘑菇堆肥中的潜在熏蒸剂进行进一步研究的原因是对西伯利亚土壤杆菌的植物衍生产品进行了研究。

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