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首页> 外文期刊>Journal of Aquatic Plant Management >Compatibility of an insect, a fungus, and a herbicide for integrated pest management ofdioecious hydrilla
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Compatibility of an insect, a fungus, and a herbicide for integrated pest management ofdioecious hydrilla

机译:昆虫,真菌和除草剂的兼容性,可用于综合防治害水hydr

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During the past 15 yr dioecious hydrilla (Hydrilla verticillata) in Florida developed resistance to fluridone and endothall, two registered herbicides approved for aquatic use. An integrated pest management approach could mitigate the effects of herbicide resistance and improve the sustainability of dioecious hydrilla management in Florida. In this study, we tested a reduced-risk method for dioecious hydrilla control by integrating selective insect herbivory with a disease organism or low concentrations of a new herbicide recently registered for aquatic use. Two rates of the fungal pathogen Mycoleptodiscus terrestris (Mt) and the acetolactate synthase-inhibiting herbicide imazamox, and two densities of the hydrilla tip-mining midge Cricotopus lebetis alone and in combination were randomly applied to aquaria containing established hydrilla plants and replicated three times. Hydrilla shoots in each tank were harvested ~30 d after the treatments were applied. Hydrilla biomass produced in each treatment was compared. Results showed that combining the hydrilla tip-mining midge C. lebetis with either the Mt fungus or herbicide imazamox significantly reduced hydrilla growth and the effects in some treatments were synergistic. Furthermore, C. lebetis wascompatible with the herbicide imazamox; adult emergence of C. lebetis was similar in aquaria treated with imazamox compared with untreated controls. Incorporating biological control agents like Mt and the tip-mining midge C. lebetis into an integrated weed-management strategy could reduce overreliance on herbicides and provide a more sustainable solution to Florida's dioecious hydrilla problem.
机译:在过去的15年中,佛罗里达州的雌雄异体的水hydr(Hydrilla verticillata)产生了对氟啶酮和内皮索尔的抗药性,这两种已注册的除草剂已批准用于水生植物。病虫害综合治理方法可以减轻除草剂耐药性的影响,并改善佛罗里达州雌雄异体的水management治理的可持续性。在这项研究中,我们通过将选择性昆虫食草与疾病生物或低浓度新近注册用于水生植物的新型除草剂相结合,测试了降低雌雄异体的水hydr控制的风险的方法。将两种速率的真菌病原菌Mycoleptodiscus terrestris(Mt)和抑制乙酰乳酸合酶的除草剂Imazamox以及两种密度的单独挖出的水tip吸顶Cri蚊(Cricotopus lebetis)和两种密度随机应用于包含已建立的水草植物的水族箱中,并重复3次。施药后约30 d收获每个罐中的水生芽。比较每种处理中产生的水生生物量。结果表明,将水tip吸顶mid虫与Mt真菌或除草剂咪唑胺混合使用可显着降低水hydr的生长,并且在某些处理中效果是协同的。此外,C。lebetis与除草剂imazamox相容。与未经治疗的对照组相比,用Imazamox治疗的水族箱中成人隐球菌的出现与之相似。将诸如Mt的生物防治剂和开挖的小中生梭菌(C. lebetis)纳入综合的杂草管理策略中,可以减少对除草剂的过度依赖,并为佛罗里达州的雌雄异体的海藻问题提供更可持续的解决方案。

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