首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >‘Insect aquaplaning’ on a superhydrophilic hairy surface: how Heliamphora nutans Benth. pitcher plants capture prey
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‘Insect aquaplaning’ on a superhydrophilic hairy surface: how Heliamphora nutans Benth. pitcher plants capture prey

机译:在超亲水的毛状表面上进行昆虫滑水:Heliamphora nutans Benth的样子。投手植物捕获猎物

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摘要

Trichomes are a common feature of plants and perform important and diverse functions. Here, we show that the inward-pointing hairs on the inner wall of insect-trapping Heliamphora nutans pitchers are highly wettable, causing water droplets to spread rapidly across the surface. Wetting strongly enhanced the slipperiness and increased the capture rate for ants from 29 to 88 per cent. Force measurements and tarsal ablation experiments revealed that wetting affected the insects' adhesive pads but not the claws, similar to the ‘aquaplaning’ mechanism of (unrelated) Asian Nepenthes pitcher plants. The inward-pointing trichomes provided much higher traction when insects were pulled outwards. The wetness-dependent capture mechanisms of H. nutans and Nepenthes pitchers present a striking case of functional convergence, whereas the use of wettable trichomes constitutes a previously unknown mechanism to make plant surfaces slippery.
机译:毛滴虫是植物的共同特征,具有重要而多样的功能。在这里,我们显示了诱虫的Heliamphora nutans投手内壁上的向内毛发具有很高的可润湿性,从而导致水滴在整个表面上迅速扩散。润湿极大地增强了滑爽性,并将蚂蚁的捕获率从29%提高到88%。力量测量和消融实验表明,润湿影响昆虫的粘垫而不影响爪子,类似于(无关的)亚洲猪笼草捕虫草的“滑水机制”。当昆虫被向外拉时,向内的毛线提供了更高的牵引力。 H. nutans和Nepenthes猪笼草的依赖湿度的捕集机制是功能收敛的显着案例,而可湿性毛状体的使用构成了使植物表面光滑的先前未知的机制。

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