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Coexisting generalist herbivores occupy unique nutritional feeding niches

机译:共存的食草动物占据着独特的营养喂养生态位

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摘要

A mainstay of ecological theory and practice is that coexisting species use different resources, leading to the local development of biodiversity. However, a problem arises for understanding coexistence of multiple species if they share critical resources too generally. Here, we employ an experimental framework grounded in nutritional physiology to show that closely related, cooccurring and generalist-feeding herbivores (seven grasshopper species in the genus Melanoplus; Orthoptera: Acrididae) eat protein and carbohydrate in different absolute amounts and ratios even if they eat the same plant taxa. The existence of species-specific nutritional niches provides a cryptic mechanism that helps explain how generalist herbivores with broadly overlapping diets might coexist. We also show that performance by grasshoppers allowed to mix their diets and thus regulate their protein-carbohydrate intake matched optimal performance peaks generated from no-choice treatments. These results indicate the active nature of diet selection to achieve balanced diets and provide buffering capacity in the face of variable food quality. Our empirical findings and experimental approach can be extended to generate and test predictions concerning the intensity of biotic interactions between species, the relative abundance of species, yearly fluctuations in population size, and the nature of interactions with natural enemies in tritrophic niche space.
机译:生态学理论和实践的支柱是共存的物种使用不同的资源,从而导致生物多样性在当地的发展。但是,如果它们普遍地共享关键资源,就会出现理解多个物种共存的问题。在这里,我们采用了一个以营养生理学为基础的实验框架,以显示密切相关的,同时发生的和通俗性的食草动物(Melanoplus属中的七个蚱hopper物种;直翅目:Ac科)即使以绝对的数量和比例食用蛋白质和碳水化合物,同一植物分类群。特定物种的营养生态位的存在提供了一种神秘的机制,有助于解释具有广泛重叠饮食的多食草食动物如何共存。我们还表明,蚱performance的表现允许混合饮食,从而调节其蛋白质碳水化合物的摄入量,与无选择处理产生的最佳表现峰值相匹配。这些结果表明饮食选择的积极性,以实现均衡饮食并在食品质量变化时提供缓冲能力。我们的经验发现和实验方法可以扩展,以生成和检验有关物种之间生物相互作用的强度,物种相对丰度,种群规模的年度波动以及与三养生物利基空间中天敌相互作用的性质的预测。

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