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The effect of surface anisotropy in the slippery zone of Nepenthes alata pitchers on beetle attachment

机译:猪笼草湿滑区表层各向异性对甲虫附着的影响

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摘要

The slippery zone in pitchers of the carnivorous plant Nepenthes alata bears scattered prominent lunate cells and displays continuous epicuticular crystalline wax coverage. The aim of this study was to examine the influence of the surface anisotropy, caused by the shape of lunate cells, on insect attachment ability. Traction tests with ladybird beetles Coccinella septempunctata were performed in two types of experiments, where surface samples of (1) intact pitchers, (2) chemically de-waxed pitchers, and (3) their polymer replicas were placed horizontally. Beetle traction forces were measured when they walked on test surfaces in either an upward (towards the peristome) or downward (towards the pitcher bottom) direction, corresponding to the upright or inverted positions of the pitcher. On intact pitcher surfaces covered with both lunate cells and wax crystals, experiments showed significantly higher forces in the direction towards the pitcher bottom. To distinguish between the contributions, from claw interlocking and pad adhesion, to insect attachment on the pitcher surfaces, intact versus claw-ablated beetles were used in the second type of experiment. On both de-waxed plant samples and their replicas, intact insects generated much higher forces in the downward direction compared to the upward one, whereas clawless insects did not. These results led to the conclusion that, (i) due to the particular shape of lunate cells, the pitcher surface has anisotropic properties in terms of insect attachment, and (ii) claws were mainly responsible for attachment enhancement in the downward pitcher direction, since, in this direction, they could interlock with overhanging edges of lunate cells.
机译:食肉植物猪笼草的猪笼草中的湿滑区带有分散的突出的月光细胞,并显示出连续的表皮结晶蜡覆盖。这项研究的目的是检查由发光细胞的形状引起的表面各向异性对昆虫附着能力的影响。在两种类型的实验中对瓢虫甲虫球菌进行了牵引试验,其中(1)完整的水罐,(2)化学脱蜡的水罐和(3)其聚合物复制品的表面样品水平放置。甲虫的牵引力是当它们在测试表面上朝上(朝着蠕动的方向)或朝下(朝着水罐的底部)的方向行走时(对应于水罐的直立或倒立位置)进行测量的。在覆盖有发光细胞和蜡晶体的完整的水罐表面上,实验表明,在朝向水罐底部的方向上的力明显更高。为了区分爪子互锁和垫块粘附对捕虫笼表面昆虫附着的贡献,在第二种类型的实验中使用了完整的与爪消融的甲虫。在脱蜡的植物样品及其复制品上,完整的昆虫在向下的方向上产生的力比向上的昆虫高,而无爪昆虫则没有。这些结果得出以下结论:(i)由于发光细胞的特殊形状,投手表面在昆虫附着方面具有各向异性,并且(ii)爪主要负责在向下的投手方向上增强附着,因为在这个方向上,它们可能与发光细胞的突出边缘互锁。

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