Simone G Traband, Hailey N Shanovich, John C. Luhman, Brian Aukema
{"title":"北美地区拟寄生物对欧洲果棘虱的生物防治综述及杂交榛子果园的初步发现","authors":"Simone G Traband, Hailey N Shanovich, John C. Luhman, Brian Aukema","doi":"10.22543/0090-0222.2449","DOIUrl":null,"url":null,"abstract":"The European fruit lecanium, Parthenolecanium corni (Bouché) (Hemiptera: Coccidae) is a native insect to North America that causes significant damage to a large variety of fruit and ornamental trees worldwide. Here we provide a summary of the insect’s worldwide distribution and synopsis of all the Hymenopteran parasitoid wasps found to parasitize P. corni in North America from past literature. Additionally, a preliminary parasitoid survey of P. corni was carried out in two hybrid hazel (Corylus avellana × C. americana) plantings as hazelnuts represent a potential new crop for the region. European fruit lecanium, Parthenolecanium corni (Bouché) (Hemiptera: Coccidae), were collected over two sample days in July 2022 from two hybrid hazelnut plantings and their parasitoid fauna recorded. Parasitism rates of P. corni were estimated for hymenopterous parasitoids as well as the entomophagous fungus Ophiocordyceps clavulata (Ascomycota: Hypocreales: Ophiocordycipitaceae). Hymenopterous parasitoids were identified to the lowest taxonomic level possible. Relationships between parasitism rates (a binomial response) and P. corni density (the predictor variable) were analyzed using binomial generalized linear models. Parthenolecanium corni experienced high parasitism rates: 24.0% by hymenopteran parasitoids, and 63.4% by entomophagous fungi, giving a combined parasitism rate of 87.4%. Wasp and fungal parasitism exhibited contrasting density-dependent relationships. Plants with higher densities of scales experienced lower parasitism rates from hymenopteran parasitoids, but higher scale densities experienced higher parasitism rates from O. clavulata. Further research is needed over the whole adult female life stage of P. corni to learn more about these ecological relationships that could be of great benefit to hybrid hazelnut growers if P. corni becomes a significant pest.","PeriodicalId":53569,"journal":{"name":"Great Lakes Entomologist","volume":"54 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-09-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Synopsis of biological control for European fruit lecanium (Parthenolecanium corni) by parasitoids in North America and preliminary findings in hybrid hazelnut orchards\",\"authors\":\"Simone G Traband, Hailey N Shanovich, John C. 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Parasitism rates of P. corni were estimated for hymenopterous parasitoids as well as the entomophagous fungus Ophiocordyceps clavulata (Ascomycota: Hypocreales: Ophiocordycipitaceae). Hymenopterous parasitoids were identified to the lowest taxonomic level possible. Relationships between parasitism rates (a binomial response) and P. corni density (the predictor variable) were analyzed using binomial generalized linear models. Parthenolecanium corni experienced high parasitism rates: 24.0% by hymenopteran parasitoids, and 63.4% by entomophagous fungi, giving a combined parasitism rate of 87.4%. Wasp and fungal parasitism exhibited contrasting density-dependent relationships. Plants with higher densities of scales experienced lower parasitism rates from hymenopteran parasitoids, but higher scale densities experienced higher parasitism rates from O. clavulata. 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引用次数: 0
摘要
欧洲的瓢虫(Parthenolecanium corni (bouch))(半翅目:瓢虫科)是北美的一种原生昆虫,对世界各地的各种水果和观赏树木造成重大损害。本文总结了该昆虫在世界范围内的分布情况,并从以往文献中对所有在北美发现的寄生于大角蜂的膜翅目拟寄生蜂进行了概述。此外,由于榛子是该地区潜在的新作物,因此对两种杂交榛子(Corylus avellana × C. americana)进行了初步的寄生蜂调查。对2022年7月在两处杂交榛子种植中采集到的欧洲果寄生菌Parthenolecanium corni (bouch)(半翅目:瓢虫科)进行了记录。对膜翅类寄生蜂和食虫真菌蛇虫草的寄生率进行了估计(子囊菌目:下creales:蛇虫草科)。膜翅类寄生蜂被鉴定到最低的分类水平。采用二项广义线性模型分析了寄主率(二项反应)与玉米粉虱密度(预测变量)之间的关系。寄生蜂被膜翅类寄生蜂寄生24.0%,被食虫真菌寄生63.4%,寄生蜂的寄生率为87.4%。寄生蜂和真菌的寄生性表现出不同的密度依赖关系。鳞片密度越大,膜翅类寄生蜂的寄生率越低,鳞片密度越大,寄生蜂的寄生率越高。需要对玉米粉虱的整个成年雌性生命阶段进行进一步的研究,以了解更多的这些生态关系,如果玉米粉虱成为一个重要的害虫,可能对杂交榛子种植者有很大的好处。
Synopsis of biological control for European fruit lecanium (Parthenolecanium corni) by parasitoids in North America and preliminary findings in hybrid hazelnut orchards
The European fruit lecanium, Parthenolecanium corni (Bouché) (Hemiptera: Coccidae) is a native insect to North America that causes significant damage to a large variety of fruit and ornamental trees worldwide. Here we provide a summary of the insect’s worldwide distribution and synopsis of all the Hymenopteran parasitoid wasps found to parasitize P. corni in North America from past literature. Additionally, a preliminary parasitoid survey of P. corni was carried out in two hybrid hazel (Corylus avellana × C. americana) plantings as hazelnuts represent a potential new crop for the region. European fruit lecanium, Parthenolecanium corni (Bouché) (Hemiptera: Coccidae), were collected over two sample days in July 2022 from two hybrid hazelnut plantings and their parasitoid fauna recorded. Parasitism rates of P. corni were estimated for hymenopterous parasitoids as well as the entomophagous fungus Ophiocordyceps clavulata (Ascomycota: Hypocreales: Ophiocordycipitaceae). Hymenopterous parasitoids were identified to the lowest taxonomic level possible. Relationships between parasitism rates (a binomial response) and P. corni density (the predictor variable) were analyzed using binomial generalized linear models. Parthenolecanium corni experienced high parasitism rates: 24.0% by hymenopteran parasitoids, and 63.4% by entomophagous fungi, giving a combined parasitism rate of 87.4%. Wasp and fungal parasitism exhibited contrasting density-dependent relationships. Plants with higher densities of scales experienced lower parasitism rates from hymenopteran parasitoids, but higher scale densities experienced higher parasitism rates from O. clavulata. Further research is needed over the whole adult female life stage of P. corni to learn more about these ecological relationships that could be of great benefit to hybrid hazelnut growers if P. corni becomes a significant pest.