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首页> 外文期刊>South African Journal of Enology and Viticulture >Laboratory Bioassays on the Susceptibility of Trimen's False Tiger Moth, Agoma trimenii (Lepidoptera: Agaristidae), to Entomopathogenic Nematodes and Fungi
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Laboratory Bioassays on the Susceptibility of Trimen's False Tiger Moth, Agoma trimenii (Lepidoptera: Agaristidae), to Entomopathogenic Nematodes and Fungi

机译:实验室生物测量粒子的敏感性,神经血小叶蛾,Agoma Trimenii(Lepidoptera:Agaristidae),对肺疗法和真菌

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Trimen's false tiger moth, Agoma trimenii (Lepidoptera: Agaristidae), recently developed as a pest of grapevine in the Northern Cape and Limpopo (Groblersdal area) provinces of South Africa. Little is known about the biology of A. trimenii and control options are lacking. The aim of this study was to test the susceptibility of A. trimenii larvae and pupae to two locally isolated entomopathogenic nematodes (EPNs), Steinernema yirgalemense and Heterorhabditis noenieputensis, and two commercially available entomopathogenic fungi (EPF), Metarhizium anisopliae and Beauveria bassiana, under laboratory conditions. Larvae and pupae were screened for pathogenicity of the two nematode species, using a concentration of 100 infective juveniles (IJs)/50 μ! of water. After 48 h, 100% mortality of the larval stage was found. However, no pupae were infected with EPNs. Larvae and pupae were screened for pathogenicity of the two EPF isolates by means of a dipping test, at a concentration of 0.2 ml/500 ml water and 0.5 g/500 ml water, respectively. Five days post-treatment, 100% larval mortality was recorded in comparison with no deaths in the controls. Overt mycosis was only observed in the case of M. anisopliae. However, in the case of pupae, no mortality was observed for both the nematode and the fungal applications. In future studies, the prepupal soil stage of A. trimenii should be screened for susceptibility to EPNs and EPF. The results of this study indicate the excellent potential of EPNs and EPF as biological control agents against the larvae of A. trimenii, especially for application to small areas with high infestation, without disrupting an integrated pest management programme.
机译:Trimen的假Tiger飞蛾,术曲调茶叶(Lepidoptera:Agaristidae),最近被开发为北开普省和林帕(Groblersdal地区)南非葡萄园的葡萄园。关于A. Trimenii的生物学知之甚少,缺乏控制选项。本研究的目的是测试A. Trimenii幼虫和蛹到两个局部分离的昆虫疗法线虫(EPNS),Steinernema yirgalemense和杂炎Noenieutsis的易感性,以及两种市售的昆虫疗法真菌(EPF),Metarhizium Anisopliae和Beauveria Bassiana实验室条件。使用100个感染幼年(IJS)/50μ的浓度筛选幼虫和蛹的筛查,筛选出两种线虫物种的致病性。水。 48小时后,发现幼虫阶段的100%死亡率。然而,没有用EPNS感染蛹。通过浸渍试验筛选幼虫和蛹的致病性,其浓度为0.2ml / 500ml水和0.5g / 500ml水。治疗后五天,与对照组没有死亡,记录了100%幼虫死亡率。在M.AniSopliae的情况下,才观察到公开的宫霉菌。然而,在蛹的情况下,对于线虫和真菌应用,没有观察到死亡率。在未来的研究中,应筛选A. TrimenII的预备土阶段易于对EPNS和EPF的敏感性。该研究的结果表明EPNS和EPF作为针对A. Trimenii幼虫的生物对照剂的优异潜力,特别是在不扰乱综合害虫管理计划的情况下应用于具有高侵扰的小区域。

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