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首页> 外文期刊>Scientific reports. >Prey capture analyses in the carnivorous aquatic waterwheel plant (Aldrovanda vesiculosa L., Droseraceae)
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Prey capture analyses in the carnivorous aquatic waterwheel plant (Aldrovanda vesiculosa L., Droseraceae)

机译:食肉动物水上水上水车厂(Aldrovanda Vesiculosa L.,Droseraceae)的猎物捕获分析

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摘要

We investigated the predator-prey interactions between an Australian ecotype of the carnivorous waterwheel plant (Aldrovanda vesiculosa, Droseraceae) and its potential natural prey, the water flea Daphnia longicephala (Daphniidae), which also occurs in Australia. A. vesiculosa develops snap-traps, which close within ~10-100?ms after mechanical triggering by zooplankton prey. Prey capture attempts (PCAs) were recorded via high-speed cinematography in the laboratory. From 14 recorded PCAs, nine were successful for the plant (the prey was caught), and five were unsuccessful (prey could escape), resulting in a capture rate of ~64%. The prey animals' locomotion behaviour (antenna beat frequency and movement type) in trap vicinity or inside the open traps is very variable. Traps were mainly triggered with the second antennae. During trap closure, the animals moved only very little actively. A flight response in reaction to an initiated trap closure was not observed. However, several animals could escape, either by having a "lucky" starting position already outside the triggered trap, by freeing themselves after trap closure, or by being pressed out by the closing trap lobes. According to our observations in the successful PCAs, we hypothesize that the convex curvature of the two trap lobes (as seen from the outside) and the infolded trap rims are structural means supporting the capture and retention of prey. Our results are discussed in a broader biological context and promising aspects for future studies are proposed.
机译:我们调查了澳大利亚食肉厂(Aldrovanda Vesiculosa,Droseraceae)及其潜在的天然猎物,水蚤Daphnia Longicephala(Daphniidae)之间的捕食者 - 猎物之间的相互作用也发生在澳大利亚。 A. Vesiculosa开发快动陷阱,在Zooplankton Prey机械触发后近10-100°MS。猎物捕获尝试(PCA)通过实验室的高速电影进行记录。从14个录制的PCA,九个成功的工厂(捕获猎物),五个未成功(猎物可以逃脱),导致捕获率〜64%。捕食动物的捕食性动物的运动行为(天线击败频率和移动类型)在开放陷阱中或开口陷阱内部非常可变。陷阱主要用第二天线触发。在陷阱封闭期间,动物的积极移动很少。未观察到对发起的陷阱闭合反应的飞行反应。然而,通过在陷阱封闭后释放自己在触发的陷阱之外的“幸运”起始位置,几个动物可以逃脱,或者通过闭合陷阱裂片释放出来。根据我们在成功的PCA中的观察结果,我们假设两个陷阱叶片的凸曲率(如从外部所示)和掺杂陷阱轮辋是支持捕获和保留猎物的结构装置。我们的结果是在更广泛的生物背景下讨论的,并提出了未来研究的有希望的方面。

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