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首页> 外文期刊>Biology Letters >Inquiline predator increases nutrient-cycling efficiency of Nepenthes rafflesiana pitchers
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Inquiline predator increases nutrient-cycling efficiency of Nepenthes rafflesiana pitchers

机译:昆廷捕食者提高了Nepenthes Rafflesiana投手的营养循环效率

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The modified-leaf pitchers of Nepenthes rafflesiana pitcher plants are aquatic, allochthonous ecosystems that are inhabited by specialist inquilines and sustained by the input of invertebrate prey. Detritivorous inquilines are known to increase the nutrient-cycling efficiency (NCE) of pitchers but it is unclear whether predatory inquilines that prey on these detritivores decrease the NCE of pitchers by reducing detritivore populations or increase the NCE of pitchers by processing nutrients that may otherwise be locked up in detritivore biomass. Nepenthosyrphus is a small and poorly studied genus of hoverflies and the larvae of one such species is a facultatively detritivorous predator that inhabits the pitchers of N. rafflesiana. We fitted a consumer-resource model to experimental data collected from this system. Simulations showed that systems containing the predator at equilibrium almost always had higher NCEs than those containing only prey (detritivore) species. We showed using a combination of simulated predator/prey exclusions that the processing of the resource through multiple pathways and trophic levels in this system is more efficient than that accomplished through fewer pathways and trophic levels. Our results thus support the vertical diversity hypothesis, which predicts that greater diversity across trophic levels results in greater ecosystem functioning.
机译:Nepenthes Rafflesiana Pitcher植物的改性叶片投手是水生,由专家调情居住的和患者的生态系统,并通过输入无脊椎动物猎物来维持。已知酥饼调查增加投手的营养 - 循环效率(NCE),但目前尚不清楚捕食性的捕食性,通过减少碎屑群或通过加工可能为否则的营养素增加投手的NCE来降低投手的NCE。在Detrivore生物量锁定。 Nepenthosyrphus是一种小型,难以研究的悬浮花属,一种这样的物种的幼虫是一种孤立的豚鼠捕食者,其植物植物植物植物植物植物。我们将消费者资源模型拟合到从该系统收集的实验数据。模拟表明,含有捕食者在平衡时的系统几乎总是具有比仅包含猎物(Detriotivore)物种的人更高的NCE。我们使用模拟捕食者/猎物排除的组合来显示资源通过该系统中的多种途径和营养水平的资源的处理比通过更少的途径和营养水平实现的更有效。因此,我们的结果支持垂直分集假设,这预测跨越式水平的更大的多样性导致更大的生态系统功能。

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