首页> 外文期刊>Proceedings of the Royal Society of London. Biological sciences >A single wind-mediated mechanism explains high-altitude 'non-goal oriented' headings and layering of nocturnally migrating insects.
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A single wind-mediated mechanism explains high-altitude 'non-goal oriented' headings and layering of nocturnally migrating insects.

机译:单一的风介机制解释了夜间“迁徙”昆虫的高空“非目标定向”航向和分层。

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摘要

Studies made with both entomological and meteorological radars over the last 40 years have frequently reported the occurrence of insect layers, and that the individuals forming these layers often show a considerable degree of uniformity in their headings--behaviour known as 'common orientation'. The environmental cues used by nocturnal migrants to select and maintain common headings, while flying in low illumination levels at great heights above the ground, and the adaptive benefits of this behaviour have long remained a mystery. Here we show how a wind-mediated mechanism accounts for the common orientation patterns of 'medium-sized' nocturnal insects. Our theory posits a mechanism by which migrants are able to align themselves with the direction of the flow using a turbulence cue, thus adding their air speed to the wind speed and significantly increasing their migration distance. Our mechanism also predicts that insects flying in the Northern Hemisphere will typically be offset to the right of the mean wind line when the atmosphere is stably stratified, with the Ekman spiral in full effect. We report on the first evidence for such offsets, and show that they have significant implications for the accurate prediction of the flight trajectories of migrating nocturnal insects.
机译:在过去的40年中,使用昆虫学和气象雷达进行的研究经常报告昆虫层的发生,并且形成这些层的个体通常在方向上表现出相当程度的统一性-这种行为称为``共同定向''。夜间迁徙者在低照度下在离地面较高的高度飞行时使用的环境提示来选择和维持共同的航向,并且这种行为的适应性收益长期以来一直是个谜。在这里,我们展示了风媒机制如何解释“中型”夜行性昆虫的常见定向模式。我们的理论提出了一种机制,通过这种机制,移民可以使用湍流提示使自己与流动方向对齐,从而将他们的风速增加到风速中,并显着增加他们的移民距离。我们的机制还预测,当大气稳定分层时,在北半球飞行的昆虫通常会偏移到平均风线的右侧,而埃克曼螺旋效应将完全发挥作用。我们报告了此类偏移的第一个证据,并表明它们对迁移夜行性昆虫的飞行轨迹的准确预测具有重要意义。

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