首页> 外文期刊>Journal of Insect Behavior >Flying Slower: Floor Pattern Object Size Affects Orthokinetic Responses During Moth Flight to Sex Pheromone
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Flying Slower: Floor Pattern Object Size Affects Orthokinetic Responses During Moth Flight to Sex Pheromone

机译:飞行速度较慢:地面模式对象的大小影响飞蛾对性信息素的直动反应。

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摘要

Previous studies with Oriental Fruit Moth (OFM, Grapholita molesta) and Heliothis virescens males flying upwind along a pheromone plume showed that they increased their upwind flight speed as they flew higher above striped floor patterns and, for OFM, to a similar degree over dotted floor patterns. This response pattern has been demonstrated in another moth species, Epiphyas postvittana and in a beetle, Prostephanus truncatus. In all cases the role played by the change in angular size of the wind tunnel's ventral floor pattern was not assessed. In the present study we specifically addressed this question with a systematic examination of moths' flight control over different sizes of transverse stripes and dot patterns ranging down by halves from 5 to 0.625 cm and a blank white floor as a control, and showed that OFM males fly faster upwind and along their flight paths over floor patterns of decreasing size. Increased speeds over striped patterns were evident as stripe width decreased below 2.5 cm, whereas moths did not increase their flight speed over dot patterns until dot size had decreased to less than 1.25 cm. Another flight component that the moths can actively control, their course angles, was unchanged above both patterns, except for moths flying over 5 cm stripes. Turning frequency and interturn distances were mostly unchanged or offset each other, negating any effects on upwind progress. As in an earlier study examining flight speeds at three heights above floor patterns of three densities, the moths' changes in speed appear to be exclusively affected by changes in their orthokinetic response to the size of the floor pattern objects.
机译:先前对东方果蛾(OFM,Grapholita molesta)和黑鳞天蛾雄虫沿着信息素羽逆风飞行的先前研究表明,当它们飞越条纹状地面以上时,它们增加了逆风飞行速度;对于OFM,在点状地面上也达到了类似的程度模式。这种反应模式已在另一种蛾类,Epiphyas postvittana和甲虫Prostephanus truncatus中得到了证明。在所有情况下,均未评估风洞腹面底板角度大小变化所起的作用。在本研究中,我们通过系统地检查飞蛾对不同大小的横向条纹和点状图案(从5到0.625厘米的一半向下,以空白的空白地板作为对照)的飞行控制来解决此问题,并显示了OFM雄性顺风飞行并沿着其飞行路径飞越尺寸减小的地面。条纹宽度减小到2.5厘米以下时,明显超过条纹图案的速度增加,而飞蛾直到点尺寸减小到小于1.25厘米时才增加其飞行速度。飞蛾可以主动控制的另一种飞行成分,它们的航向角,在两种模式上都保持不变,除了飞蛾飞过5厘米的条纹。转弯频率和转弯距离基本保持不变或相互抵消,从而消除了对上风的影响。正如在较早的一项研究中研究了三种密度的地板图案上方三个高度的飞行速度时,飞蛾的速度变化似乎完全受其对地板图案物体尺寸的正向运动响应的影响。

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