'The Garlic Gambit': an alternative strategy for controlling vine weevil (Otiorhynchus sulcatus F.; Coleoptera: Curculionidae).

Eugenia Fezza, Joe M Roberts, Toby J A Bruce, Lael E Walsh, Michael T Gaffney, Tom W Pope
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Abstract

Plant protection products derived from plant material are proposed to be a sustainable alternative to conventional synthetic chemical pesticides. This study determines the efficacy of a commercially available bioinsecticide based on garlic (Allium sativum L.; Asparagales: Amaryllidaceae) extract against vine weevil (Otiorhynchus sulcatus F.; Coleoptera: Curculionidae) eggs and larvae in contact, fumigation and a combination of contact and fumigation bioassays under laboratory conditions. Results showed that garlic significantly reduced egg hatch rate compared to the control group when applied as a fumigant. Similarly, the egg hatch rate was reduced compared to the control group when garlic was applied as combined contact and fumigant applications. No effect was observed when the garlic product was applied as a contact application. The bioinsecticide significantly reduced larval survival when either contact or fumigant applications were used. A combined contact and fumigant effect was shown also when vine weevil eggs were exposed to the bioinsecticide for 30 days in plastic containers containing growing media. The number of larvae recovered after this period was significantly reduced compared to the control group. This study demonstrates the potential of garlic-based bioinsecticides, such as Pitcher GR, for vine weevil control. Further studies are, however, needed to determine the efficacy of such bioinsecticides under field conditions and investigate how these products can be most effectively used as a part of a wider vine weevil integrated pest management program.

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大蒜赌博":控制藤象鼻虫(Otiorhynchus sulcatus F.; Coleoptera: Curculionidae)的另一种策略。
从植物材料中提取的植物保护产品被认为是传统化学合成杀虫剂的可持续替代品。本研究确定了大蒜(Allium sativum L.;Asparagales: Amaryllidaceae)提取物制成的市售生物杀虫剂对葡萄象鼻虫(Otiorhynchus sulcatus F.;鞘翅目:Curculionidae)卵和幼虫的药效,在实验室条件下进行了接触、熏蒸以及接触和熏蒸相结合的生物测定。结果表明,与对照组相比,大蒜作为熏蒸剂使用时能明显降低卵的孵化率。同样,当大蒜作为接触剂和熏蒸剂联合使用时,与对照组相比,卵孵化率也有所降低。当大蒜产品作为接触剂施用时,未观察到任何影响。无论是接触施药还是熏蒸施药,生物杀虫剂都能明显降低幼虫存活率。当葡萄象虫卵在装有生长介质的塑料容器中接触生物杀虫剂 30 天时,也显示出接触和熏蒸的综合效果。与对照组相比,30 天后恢复的幼虫数量明显减少。这项研究证明了大蒜类生物杀虫剂(如 Pitcher GR)在控制葡萄象鼻虫方面的潜力。不过,还需要进一步研究,以确定此类生物杀虫剂在田间条件下的功效,并调查如何将这些产品最有效地用作更广泛的藤象鼻虫综合害虫管理计划的一部分。
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