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Harmless nectar source or deadly trap: Nepenthes pitchers are activated by rain, condensation and nectar

机译:无害的花蜜源或致命的陷阱:猪笼草的投手被雨水,冷凝水和花蜜激活

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摘要

The leaves of Nepenthes pitcher plants are specialized pitfall traps which capture and digest arthropod prey. In many species, insects become trapped by ‘aquaplaning’ on the wet pitcher rim (peristome). Here we investigate the ecological implications of this capture mechanism in Nepenthes rafflesiana var. typica. We combine meteorological data and continuous field measurements of peristome wetness using electrical conductance with experimental assessments of the pitchers' capture efficiency. Our results demonstrate that pitchers can be highly effective traps with capture rates as high as 80% but completely ineffective at other times. These dramatic changes are due to the wetting condition of the peristome. Variation of peristome wetness and capture efficiency was perfectly synchronous, and caused by rain, condensation and nectar secreted from peristome nectaries. The presence of nectar on the peristome increased surface wetness mainly indirectly by its hygroscopic properties. Experiments confirmed that pitchers with removed peristome nectaries remained generally drier and captured prey less efficiently than untreated controls. This role of nectar in prey capture represents a novel function of plant nectar. We propose that the intermittent and unpredictable activation of Nepenthes pitcher traps facilitates ant recruitment and constitutes a strategy to maximize prey capture.
机译:猪笼草猪笼草的叶子是专门的陷阱陷阱,可以捕获和消化节肢动物的猎物。在许多物种中,昆虫被潮湿的水罐边缘(蠕虫)上的“滑水”所困。在这里,我们调查猪笼草猪笼草这种捕获机制的生态意义。 typica。我们将气象数据和使用电导率进行的蠕动湿度连续野外测量与对投手捕获效率的实验评估相结合。我们的结果表明,投手可以是非常有效的陷阱,捕获率高达80%,但在其他时间完全无效。这些巨大的变化是由于蠕动的情况。 Peristome湿度和捕获效率的变化是完全同步的,这是由Peristome蜜腺分泌的雨水,冷凝水和花蜜引起的。胶膜上的花蜜的存在主要通过其吸湿性间接增加了表面湿度。实验证实,与未处理的对照组相比,去除了乳腺蜜腺的投手通常更干燥并且捕获猎物的效率较低。花蜜在猎物捕获中的这种作用代表了植物花蜜的新功能。我们建议猪笼草捕虫笼的间歇性和不可预知的激活有助于蚂蚁的募集并构成最大化捕获猎物的策略。

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