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针对玻璃翅锐缘蝉,设计候选振动信号以进行交配干扰。

Design of a candidate vibrational signal for mating disruption against the glassy-winged sharpshooter, Homalodisca vitripennis.

机构信息

Sustainable Agro-Ecosystems and Bioresources Department, Fondazione Edmund Mach, San Michele all'Adige, (TN), Italy.

USDA-Agricultural Research Service, San Joaquin Valley Agricultural Sciences Center, Parlier, CA, USA.

出版信息

Pest Manag Sci. 2017 Nov;73(11):2328-2333. doi: 10.1002/ps.4619. Epub 2017 Jul 25.

Abstract

BACKGROUND

The glassy-winged sharpshooter (GWSS), Homalodisca vitripennis, is an important pest of grapevines due to its ability to transmit Xylella fastidiosa, the causal agent of Pierce's disease. GWSS mating communication is based on vibrational signals; therefore, vibrational mating disruption could be an alternative to insecticides for suppression of the GWSS population. Our objectives were to identify spectral features of the female signal that elicit male signaling, design disruptive signals able to alter male perception and acceptance of a female, and determine the signal intensity required for future field applications.

RESULTS

Male responses to playback of modified female signals were significantly reduced by 60-75% when part of the female signal spectral components above or below 400 Hz were deleted. Playback bioassays showed that transmission of an 80 Hz pure frequency tone to plants completely suppressed male signaling to female signal playback, even if the disruptive signal amplitude was 10 dB lower than the female signal playback.

CONCLUSION

Although the mechanism underlying cessation of male signaling activity in the presence of disruption is not yet understood, results suggest that an 80 Hz vibrational signal should be tested in laboratory and field experiments to assess its efficacy in disrupting mating of GWSS. © 2017 Society of Chemical Industry.

摘要

背景

玻璃脆盲蝽(GWSS),也就是横纹尾盲蝽,是一种重要的葡萄藤害虫,因为它能够传播李属坏死环斑病毒,也就是引起葡萄皮尔氏病的病原体。GWSS 的交配通讯是基于振动信号的;因此,振动交配干扰可能是一种替代杀虫剂来抑制 GWSS 种群的方法。我们的目标是确定激发雄性信号的雌性信号的光谱特征,设计能够改变雄性对雌性感知和接受的干扰信号,并确定未来田间应用所需的信号强度。

结果

当雌性信号的频谱成分高于或低于 400Hz 的部分被删除时,雄性对播放的改良雌性信号的反应会显著降低 60-75%。播放生物测定表明,即使干扰信号的幅度比雌性信号的播放低 10dB,将 80Hz 的纯频率音传输到植物上也会完全抑制雄性对雌性信号播放的信号。

结论

尽管目前还不清楚在存在干扰的情况下雄性信号活动停止的机制,但结果表明,应该在实验室和田间试验中测试 80Hz 的振动信号,以评估其干扰 GWSS 交配的效果。© 2017 化学工业协会。

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