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Impact of Host Plant Connectivity Crop Border and Patch Size on Adult Colorado Potato Beetle Retention

机译:寄主植物连通性作物边界和斑块尺寸对成年科罗拉多马铃薯甲虫保留的影响

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摘要

Tagged Colorado potato beetles (CPB), Leptinotarsa decemlineata (Say), were released on potato plants, Solanum tuberosum L., and tracked using a portable harmonic radar system to determine the impact of host plant spatial distribution on the tendency of the pest to remain on the colonized host plant or patch. Results confirmed the long residency time on the host plant and showed that close connection of the plant to neighboring plants hastened dispersal between plants. Tracking walking CPB for over 6 h in small potato plots revealed that all types of mixed borders tested (potato/bare ground, potato/timothy and potato/woodland) acted as a strong barrier and retained beetles within the patch. In another experiment in potato patches surrounded by bare ground borders, tracked walking CPB displayed similar behaviour for up to four days. The distribution of turning angles in the CPB walking paths was not uniform and corresponded to beetles following the edge rows of potato patches in response to the crop border barrier or reversing their direction as they reached the end of a row and therefore a border. Patch size had no or little effect on beetle retention in the patch. The relative distribution of counts of tagged beetles detected among small (16 m2), medium (64 m2) and large size (256 m2) patches of potato four days after initial release remained similar to that of numbers released. Even though mixed crop borders were a strong barrier to walking CPB emigrating from potato patches, the departure rate of beetles over time was high. Results suggest that the effect of mixed borders is largely limited to dispersal by walking and does not apply to beetles leaving host patches by flight. The manipulation of crop borders and patch size seem to have limited potential for the management of CPB emigrating from potato fields.
机译:标记的科罗拉多马铃薯甲虫(Leptinotarsa decemlineata(Say))在马铃薯植物Solanum tuberosum L.上释放,并使用便携式谐波雷达系统进行跟踪以确定宿主植物空间分布对有害生物残留趋势的影响。在定植的寄主植物或斑块上。结果证实了在寄主植物上的长居时间,并且表明该植物与邻近植物的紧密连接加速了植物之间的分散。在小型马铃薯田中跟踪步行CPB 6小时以上,发现测试的所有类型的混合边界(马铃薯/裸地,马铃薯/蒂莫西和马铃薯/林地)都是很强的屏障,并将甲虫保留在斑块内。在另一个被裸露的地面包围的马铃薯斑块中的实验中,追踪的CPB在长达四天的时间内表现出相似的行为。 CPB行走路径中的转角分布不均匀,并且对应于跟随马铃薯斑块边缘行的甲虫,以响应作物边界障碍或在到达行末并因此变为边界时反转其方向。贴剂的大小对贴剂中的甲虫保留没有影响或影响很小。在小型(16 m 2 ),中型(64 m 2 )和大型(256 m 2 )最初释放后四天的马铃薯块与释放的数量相似。尽管混合作物边界是步行CPB从马铃薯斑块迁移的强大障碍,但甲虫随时间的离开率仍然很高。结果表明,混合边界的影响在很大程度上限于步行传播,不适用于甲虫通过飞行留下寄主斑块的情况。作物边界和斑块大小的操纵似乎对于管理从马铃薯田中移出的CPB的潜力有限。

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