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万寿菊(菊目:菊科)茎干水蒸气蒸馏提取物和昆虫病原真菌对幼虫拟花蝇的影响。

Effects of steam-distilled shoot extract of Tagetes minuta (Asterales: Asteraceae) and entomopathogenic fungi on larval Tetanops myopaeformis.

作者信息

Dunkel Florence V, Jaronski Stefan T, Sedlak Christopher W, Meiler Svenja U, Veo Kendra D

机构信息

Department of Entomology, Montana State University, Bozeman, MT 59717, USA.

出版信息

Environ Entomol. 2010 Jun;39(3):979-88. doi: 10.1603/EN09259.

Abstract

Interactions of a biopesticidal formulation of steam distilled shoot extract of Mexican marigold, Tagetes minuta, and entomopathogenic fungi were evaluated for management of the sugarbeet root maggot, Tetanops myopaeformis (Röder). Shoot extract plus surfactant (E-Z Mulse) (=T. minuta oil) was used in a 65:35 ratio to test the hypothesis that this fungicidal and nematocidal biopesticide causes dose-dependent mortality and developmental arrest of T. myopaeformis but does not interfere with the action of entomopathogenic fungi when applied together. A soil-petri dish bioassay system was developed to test the hypothesis. For diapausing, nonfeeding but active 12-mo-old third-instar larvae, 0.5% T. minuta oil treatment (=0.325% active ingredient [AI]) was sufficient to prevent pupation without mortality, but 0.75% T. minuta oil treatment (=0.458% AI) was lethal for 93% of the test insects. The effect of T. minuta oil on fungal efficacy under simultaneous use was studied using a model system of two entomopathogenic fungi, Beauveria bassiana (Bals.) Vuillemin. TM28 and Metarhizium anisopliae variety anisopliae (Metsch.) Sorokin MA 1200, in a soil-based bioassay with larval sugarbeet root maggots. No adverse effects of T. minuta oil on action of entomopathogenic fungi and no synergy were found; an additive effect of the T. minuta oil and each fungal isolate separately was found.

摘要

对墨西哥万寿菊(Tagetes minuta)茎尖水蒸气蒸馏提取物的生物农药制剂与昆虫病原真菌之间的相互作用进行了评估,以防治甜菜根蛆(Tetanops myopaeformis (Röder))。茎尖提取物加表面活性剂(E-Z Mulse)(=万寿菊油)按65:35的比例使用,以验证以下假设:这种具有杀真菌和杀线虫作用的生物农药会导致甜菜根蛆的剂量依赖性死亡和发育停滞,但在与昆虫病原真菌一起使用时不会干扰其作用。开发了一种土壤培养皿生物测定系统来验证该假设。对于滞育、不进食但活跃的12月龄三龄幼虫,0.5%万寿菊油处理(=0.325%活性成分[AI])足以阻止化蛹且无死亡,但0.75%万寿菊油处理(=0.458% AI)对93% 的受试昆虫具有致死性。在含有甜菜根蛆幼虫的土壤生物测定模型系统中使用两种昆虫病原真菌——球孢白僵菌(Beauveria bassiana (Bals.) Vuillemin. TM28)和金龟子绿僵菌变种金龟子绿僵菌(Metarhizium anisopliae variety anisopliae (Metsch.) Sorokin MA 1200),研究了万寿菊油在同时使用时对真菌效力的影响。未发现万寿菊油对昆虫病原真菌的作用有不利影响,也未发现协同作用;发现万寿菊油与每种真菌分离物分别具有相加作用。

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