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Biology of the European large raspberry aphid (Amphorophora idaei): its role in virus transmission and resistance breakdown in red raspberry

机译:欧洲大树莓蚜虫(Amphorophora idaei)的生物学:其在红树莓中的病毒传播和抗性分解中的作用

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1 The European large raspberry aphid Amphorophora idaei Bcerner is the most important vector of viral diseases afflicting commercially grown red raspberry (Rubus idaeus L.) in Northern Europe, with European raspberry production amounting to 416 000tonnes per annum. This review synthesizes existing knowledge on its biology and interactions with other organisms, including its host plant and the viral pathogens it vectors. 2 Information about trophic interactions with other insect herbivores and natural enemies is reviewed. Vine weevils Otiorhynchus sulcatus compromise aphid resistance in some raspberry cultivars, increasing A. idaei abundance by 80%. Parasitoids show mixed success in parasitizing A. idaei, although Aphidius ervi attack rates more than doubled when A. idaei fed on a partially susceptible raspberry cultivar, compared with a resistant variety. These findings are discussed in the context of potential biological control as part of an integrated pest and disease management framework. 3Amphorophora idaei transmits four known viruses: Black raspberry necrosis virus, Raspberry leaf mottle virus, Raspberry leaf spot virus and Rubus yellow net virus, with A. idaei taking as little as 2 min to transmit some viruses. 4 Existing control strategies, including resistant cultivars, insecticides and eradication of disease from parent plants, are described. In particular, strong selection pressures have resulted in A. idaei overcoming genetic resistance in many raspberry cultivars and most insecticides are now ineffective. 5 Future directions for the sustained control of A. idaei are suggested, taking into consideration the possible effects of climate change and also changes in agronomic practices in U.K. agriculture.
机译:1欧洲大型覆盆子蚜虫Amcerophora idaei Bcerner是困扰北欧商业种植的红树莓(Rubus idaeus L.)的病毒性疾病的最重要媒介,欧洲树莓的年产量为41.6万吨。这篇综述综合了有关其生物学以及与其他生物(包括其宿主植物和它所携带的病毒病原体)相互作用的知识。 2综述了与其他昆虫食草动物和天敌的营养相互作用的信息。藤蔓象鼻虫(Otiorhynchus sulcatus)损害了一些树莓品种的蚜虫抗性,使大叶阿迪酵母的丰度提高了80%。尽管与抗性品种相比,当蚜虫以部分易感树莓品种为食时,蚜虫的ervi攻击率增加了一倍以上,但寄生虫在寄生于idaida。的过程中显示出不同的成功。这些发现是在潜在的生物防治范围内讨论的,这是病虫害综合治理框架的一部分。 3菜豆大白菜传播四种已知病毒:黑树莓坏死病毒,树莓叶斑驳病毒,树莓叶斑病毒和悬钩子黄净病毒,而菜豆大叶蝉仅需2分钟即可传播某些病毒。 4描述了现有的控制策略,包括抗性品种,杀虫剂和从亲本植物根除疾病。特别是,强大的选择压力已导致大叶冷杉在许多树莓品种中克服了遗传抗性,并且大多数杀虫剂现已失效。 5考虑到气候变化可能带来的影响以及英国农业中农艺习惯的变化,提出了对大叶螨进行持续控制的未来方向。

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