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首页> 外文期刊>Agricultural and Forest Entomology >Volatiles from the symbiotic fungus Raffaelea lauricola are synergistic with Manuka lures for increased capture of the Redbay ambrosia beetle Xyleborus glabratus.
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Volatiles from the symbiotic fungus Raffaelea lauricola are synergistic with Manuka lures for increased capture of the Redbay ambrosia beetle Xyleborus glabratus.

机译:共生真菌Raffaelea lauricola的挥发物与麦卢卡(Manuka)诱饵具有协同作用,可增加对Redbay沙棘甲虫Xyleborus glabratus的捕获。

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摘要

Redbay ambrosia beetle Xyleborus glabratus is an invasive wood boring beetle that has become established in the southeastern U.S.A. and transmits a fungus Raffaelea lauricola that causes lethal laurel wilt. Among susceptible Lauraceae hosts are redbay Persea borbonia and avocado Persea americana. There is a crucial need for detection of this pest as it moves into new areas. Consequently, our goal was to create a better lure for the monitoring and control of redbay ambrosia beetle. We analyzed volatile emissions of R. lauricola, created a synthetic odour blend based on this analysis and tested this odour blend as a potential attractant in a redbay forest infested with X. glabratus. The synthetic Raffaelea odour blend was not attractive to the beetles by itself. However, it synergistically increased attraction to host-mimic volatiles. We tested four commercial release devices for dispensing Raffaelea odour at various release rates. Two prototypes with the highest release rate, when paired with commercial manuka oil lures, captured more beetles than manuka oil lures alone. These results indicate that a synthetic blend of volatiles based on the odour of the symbiotic fungus of X. glabratus may be useful for the development of more sensitive monitoring lures for this invasive pathogen vector.
机译:Redbay安布罗西亚甲虫Xyleborus glabratus是一种侵入性木材无聊甲虫,已在美国东南部建立,并传播引起致命月桂枯萎的真菌Raffaelea lauricola。在易感的月桂科寄主中有redbay Persea borbonia和鳄梨Persea americana。随着这种有害生物转移到新的地区,迫切需要对其进行检测。因此,我们的目标是创造一个更好的诱饵,以监测和控制红bay佳肴甲虫。我们分析了R. lauricola的挥发物排放,在此分析的基础上创建了合成的气味共混物,并测试了这种气味共混物作为在有X. glabratus侵扰的红湾森林中的潜在诱因。合成的Raffaelea气味混合物本身对甲虫没有吸引力。然而,它协同增加了对宿主模拟挥发物的吸引力。我们测试了四种商用释放装置,以不同的释放速率分配拉斐尔气味。与商业麦卢卡油诱饵搭配使用时,两个具有最高释放率的原型比单独的麦卢卡油诱饵捕获更多的甲虫。这些结果表明,基于欧洲黑斑病菌共生真菌气味的挥发物合成混合物可用于开发针对这种侵入性病原体载体的更敏感的监测诱饵。

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