Fondazione Edmund Mach, Research and Innovation Center, Sustainable ecosystems and bioresources, San Michele all'Adige, Italy.
Department of Biology, University of Florence, Sesto Fiorentino, Italy.
Pest Manag Sci. 2019 Apr;75(4):1065-1073. doi: 10.1002/ps.5216. Epub 2018 Oct 22.
The green leafhopper, Empoasca vitis, is a polyphagous pest of grapevine and tea plants. To date population density is controlled primarily by insecticides and there is a demand for more sustainable controls. To develop a vibrational mating disruption method, the natural occurrence of a 'disruptive signal' was investigated. Further, the efficacy of natural and artificial 'disruptive signals' was determined.
With behavioral trials we described male rivalry and recorded a species-specific disruptive signal (DP). The DP, a single pulse overlapping the competitor male call, interfered with the rival's ability to locate the female. Laboratory playback disruption trials revealed that the pair formation process was prevented by artificial disturbance noises that included the following features: E. vitis DP, Scaphoideus titanus disturbance noise, and a pure tone (250 Hz). Among these, the pure tone was most efficient at preventing mating.
Results support development of a vibrational mating disruption method as a control strategy for E. vitis. To simultaneously disrupt the mating of E. vitis and S. titanus, the possibility of applying the S. titanus disturbance noise combined with the pure tone is discussed. © 2018 Society of Chemical Industry.
葡萄蔓叶蝉是一种多食性害虫,危害葡萄和茶树。目前主要通过杀虫剂来控制其种群密度,但人们需要更可持续的控制方法。为了开发一种基于振动的交配干扰方法,我们研究了自然发生的“干扰信号”。此外,还确定了天然和人工“干扰信号”的效果。
通过行为试验,我们描述了雄性竞争,并记录了一种具有物种特异性的干扰信号(DP)。DP 是一个与竞争雄性叫声重叠的单脉冲,干扰了雄性定位雌性的能力。实验室回放干扰试验表明,包括以下特征的人工干扰噪声可以阻止交配:葡萄蔓叶蝉 DP、大青叶蝉干扰噪声和纯音(250 Hz)。在这些特征中,纯音在阻止交配方面最有效。
结果支持将基于振动的交配干扰方法作为防治葡萄蔓叶蝉的一种控制策略。为了同时干扰葡萄蔓叶蝉和大青叶蝉的交配,可以考虑应用大青叶蝉干扰噪声与纯音相结合的方法。© 2018 英国化学学会。