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首页> 外文期刊>The Journal of Experimental Biology >Paradox of the drinking-straw model of the butterfly proboscis
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Paradox of the drinking-straw model of the butterfly proboscis

机译:蝴蝶长鼻吸管模型的悖论

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Fluid-feeding Lepidoptera use an elongated proboscis, conventionally modeled as a drinking straw, to feed from pools and films of liquid. Using the monarch butterfly, Danaus plexippus (Linnaeus), we show that the inherent structural features of the lepidopteran proboscis contradict the basic assumptions of the drinking-straw model. By experimentally characterizing permeability and flow in the proboscis, we show that tapering of the food canal in the drinking region increases resistance, significantly hindering the flow of fluid. The calculated pressure differential required for a suction pump to support flow along the entire proboscis is greater than 1 atm (similar to 101 kPa) when the butterfly feeds from a pool of liquid. We suggest that behavioral strategies employed by butterflies and moths can resolve this paradoxical pressure anomaly. Butterflies can alter the taper, the interlegular spacing and the terminal opening of the food canal, thereby controlling fluid entry and flow, by splaying the galeal tips apart, sliding the galeae along one another, pulsing hemolymph into each galeal lumen, and pressing the proboscis against a substrate. Thus, although physical construction of the proboscis limits its mechanical capabilities, its functionality can be modified and enhanced by behavioral strategies
机译:液体喂养的鳞翅目使用细长的长鼻,通常以吸管为模型,从水池和液体薄膜中进行喂养。我们使用帝王蝶Danaus plexippus(Linnaeus),表明鳞翅目长鼻的内在结构特征与吸管模型的基本假设相矛盾。通过实验表征长鼻中的渗透性和流量,我们显示出饮用区域中的食道逐渐变细会增加阻力,从而显着阻碍流体的流动。当蝶阀从一个液体池中进料时,抽水泵支持整个长鼻流所需的计算压差大于1个大气压(类似于101 kPa)。我们建议蝴蝶和飞蛾采用的行为策略可以解决这种自相矛盾的压力异常。蝴蝶可以改变食道的锥度,两腿间的间距和食道的末端开口,从而通过张开galeal尖端,使gaaleae彼此滑动,将血淋巴脉冲到每个galal腔中并按压长吻来控制流体的进入和流动。紧贴基材。因此,尽管象鼻的物理构造限制了它的机械性能,但是可以通过行为策略来修改和增强其功能。

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