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夜间,果园冠层中来自点源的信息素羽流的轨迹也会上升。

The plume also rises: trajectories of pheromone plumes issuing from point sources in an orchard canopy at night.

出版信息

J Chem Ecol. 2013 Sep;39(9):1150-60. doi: 10.1007/s10886-013-0341-9.

DOI:10.1007/s10886-013-0341-9
PMID:24078285
Abstract

The trajectories of pheromone plumes in canopied habitats, such as orchards, have been little studied. We documented the capture of male navel orangeworm moths, Amyelois transitella, in female-baited traps positioned at 5 levels, from ground level to the canopy top, at approximately 6 m above ground, in almond orchards. Males were captured in similar proportions at all levels, suggesting that they do not favor a particular height during ranging flight. A 3-D sonic anemometer was used to establish patterns of wind flow and temperature at 6 heights from 2.08 to 6.65 m in an almond orchard with a 5 m high canopy, every 3 h over 72 h. The horizontal velocity of wind flow was highest above the canopy, where its directionality also was the most consistent. During the time of A. transitella mating (0300-0600), there was a net vertical displacement upward. Vertical buoyancy combined with only minor reductions in the distance that plumes will travel in the lower compared to the upper canopy suggest that the optimal height for release of pheromone from high-release rate sources, such as aerosol dispensers (“puffers”), that are deployed at low densities (e.g., 3 per ha.) would be at mid or low in the canopy, thereby facilitating dispersion of disruptant throughout the canopy. Optimal placement of aerosol dispensers will vary with the behavioral ecology of the target pest; however, our results suggest that current protocols, which generally propose dispenser placement in the upper third of the canopy, should be reevaluated.

摘要

在有树冠遮蔽的栖息地(如果园)中,信息素羽流的轨迹研究较少。我们记录了在杏仁果园中,位于地面至树冠顶部约 6 米高处的 5 个水平高度,用雌虫诱饵陷阱捕获到的雄性 navel orangeworm 蛾,Amyelois transitella。在所有水平高度上,雄性的捕获比例相似,这表明它们在飞行中不会偏向特定的高度。使用 3-D 声风速计在一个有 5 米高树冠的杏仁果园中,从 2.08 米到 6.65 米的 6 个高度处,每 3 小时测量一次风速和温度,共测量 72 小时。树冠上方的水平风速最高,风向也最稳定。在 A. transitella 交配期间(0300-0600),有一个向上的净垂直位移。垂直浮力加上羽流在较低树冠层中行进的距离仅略有减少,这表明从高释放率源(例如,气溶胶分配器(“气泵”))释放信息素的最佳高度将处于树冠的中间或较低位置,从而促进了干扰剂在整个树冠中的分散。气溶胶分配器的最佳位置将随目标害虫的行为生态学而变化;然而,我们的结果表明,目前普遍提出的将分配器放置在树冠上三分之一的方案,应重新评估。

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