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Aerodynamic advantages of upside down take-off for aerial dispersal in Tetranychus spider mites

机译:Tetranychus蜘蛛螨空中倒置的颠倒起飞的空气动力学优势

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Aerial dispersal may be important for redistribution of spider mites into new habitats. Evidence for behavioral control of aerial take-off has been well documented for Tetranychus urticae Koch. Before aerial dispersal they exhibit the aerial take-off posture that involves lifting the forelegs upright and raising the forebody. However, whether the aerial take-off posture functions to increase drag has remained unclear. The objectives of this study were to clarify: (i) aerodynamic effects of the aerial take-off posture; and (ii) actual aerial take-off behavior in T. urticae. To evaluate the aerodynamic forces experienced by grounded spider mites in different postures, we constructed three-dimensional models of T. urticae, exhibiting the aerial take-off posture and the normal posture, using computer graphics. We found that the aerial take-off posture was effective in receiving greater rearward forces from wind rather than upward forces. As a result, aerial take-off from a horizontal platform is unlikely. Instead, inverted departure surfaces, e.g., lower leaf surfaces, with inclines are likely to be effective sites for take-off. Laboratory experiments and field observations indicated that the mites preferentially adopted such a position for orientation and take-off. Our findings provided a rationale for the take-off behavior of Tetranychus spider mites.
机译:空中扩散对于将红蜘蛛重新分布到新的栖息地中可能很重要。空中起飞行为控制的证据已被广泛记录为Tetranychus urticae Koch。在进行空中散布之前,他们表现出空中起飞姿势,该姿势包括将前肢竖直抬起并抬高前躯。但是,尚不清楚空中起飞姿势是否具有增加阻力的作用。这项研究的目的是阐明:(i)空中起飞姿势的空气动力学影响; (ii)荨麻疹的实际空中起飞行为。为了评估接地蜘蛛螨在不同姿势下承受的空气动力,我们使用计算机图形学构建了荨麻疹的三维模型,展示了空中起飞姿势和正常姿势。我们发现空中起飞姿势可以有效地接收更大的风向后力,而不是向上的力。结果,不太可能从水平平台进行空中起飞。相反,倒置的离开表面,例如较低的叶片表面,具有倾斜可能是有效的起飞地点。实验室实验和现场观察表明,螨虫优先采用这种姿势进行定向和起飞。我们的发现为Tetranychus红蜘蛛的起飞行为提供了理论依据。

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