Behavioural responses to mammalian grazing expose insect herbivores to elevated risk of avian predation

捕食 食草动物 生物 蚱蜢 生态学 营养级联 营养水平 放牧 觅食 食物网 捕食者 生态系统
作者
Yu Zhu,Xiaofei Li,Xiongbing Tu,Anita C. Risch,Zhaojun Wang,Quanhui Ma,Ming Jiang,Yuanchun Zou,Deli Wang,Moshe Inbar,Dror Hawlena,Zhiwei Zhong
出处
期刊:Proceedings of The Royal Society B: Biological Sciences [Royal Society]
卷期号:291 (2032) 被引量:2
标识
DOI:10.1098/rspb.2024.1112
摘要

Large mammalian herbivores (LMH) are important functional components and drivers of biodiversity and ecosystem functioning in grasslands. Yet their role in regulating food-web dynamics and trophic cascades remains poorly understood. In the temperate grasslands of northern China, we explored whether and how grazing domestic cattle ( Bos taurus ) alter the predator–prey interactions between a dominant grasshopper ( Euchorthippus unicolor ) and its avian predator the barn swallow ( Hirundo rustica ). Using two large manipulative field experiments, we found that in the presence of cattle, grasshoppers increased their jumping frequency threefold, swallows increased foraging visits to these fields sixfold, and grasshopper density was reduced by about 50%. By manipulatively controlling the grasshoppers’ ability to jump, we showed that jumping enables grasshoppers to avoid being incidentally consumed or trampled by cattle. However, jumping behaviour increased their consumption rates by swallows 37-fold compared with grasshoppers that were unable to jump. Our findings illustrate how LMH can indirectly alter predator–prey interactions by affecting behaviour of avian predators and herbivorous insects. These non-plant-mediated effects of LMH may influence trophic interactions in other grazing ecosystems and shape community structure and dynamics. We highlight that convoluted multispecies interactions may better explain how LMH control food-web dynamics in grasslands.

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