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Predicting the potential demographic impact of predators on their prey: a comparative analysis of two carnivore–ungulate systems in Scandinavia

机译:预测捕食者对其猎物的潜在人口统计学影响:斯堪的那维亚的两个食肉动物-有蹄类动物系统的比较分析

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摘要

>1. Understanding the role of predation in shaping the dynamics of animal communities is a fundamental issue in ecological research. Nevertheless, the complex nature of predator–prey interactions often prevents researchers from modelling them explicitly.>2. By using periodic Leslie–Usher matrices and a simulation approach together with parameters obtained from long-term field projects, we reconstructed the underlying mechanisms of predator–prey demographic interactions and compared the dynamics of the roe deer–red fox–Eurasian lynx–human harvest system with those of the moose–brown bear–gray wolf–human harvest system in the boreal forest ecosystem of the southern Scandinavian Peninsula.>3. The functional relationship of both roe deer and moose λ to changes in predation rates from the four predators was remarkably different. Lynx had the strongest impact among the four predators, whereas predation rates by wolves, red foxes, or brown bears generated minor variations in prey population λ. Elasticity values of lynx, wolf, fox and bear predation rates were −0·157, −0·056, −0·031 and −0·006, respectively, but varied with both predator and prey densities.>4. Differences in predation impact were only partially related to differences in kill or predation rates, but were rather a result of different distribution of predation events among prey age classes. Therefore, the age composition of killed individuals emerged as the main underlying factor determining the overall per capita impact of predation.>5. Our results confirm the complex nature of predator–prey interactions in large terrestrial mammals, by showing that different carnivores preying on the same prey species can exert a dramatically different demographic impact, even in the same ecological context, as a direct consequence of their predation patterns. Similar applications of this analytical framework in other geographical and ecological contexts are needed, but a more general evaluation of the subject is also required, aimed to assess, on a broader systematic and ecological range, what specific traits of a carnivore are most related to its potential impact on prey species.
机译:> 1。。了解捕食在塑造动物群落动态中的作用是生态研究的基本问题。尽管如此,捕食者与猎物相互作用的复杂性常常使研究人员无法对其进行建模。> 2 。通过使用周期性Leslie-Usher矩阵和模拟方法以及从长期田间项目获得的参数,我们重建了捕食者与猎物人口相互作用的基本机制,并比较了北方森林生态系统中the–红狐–欧亚山猫–人类收获系统与驼鹿–棕熊–灰狼–人类收获系统的动态。斯堪的纳维亚半岛南部。> 3。。four和驼鹿λ与四种捕食者的捕食率变化之间的函数关系显着不同。在四个捕食者中,天猫的影响最大,而狼,赤狐或棕熊的捕食率在猎物种群λ中产生较小的变化。山猫,狼,狐狸和熊的捕食率的弹性值分别为-0·157,-0·056,-0·031和-0·006,但随捕食者和猎物的密度而变化。> 4. < / strong>捕食影响的差异仅部分与杀死率或捕食率的差异有关,而只是捕食年龄类之间捕食事件分布不同的结果。因此,被杀死个体的年龄构成成为决定捕食对人均总体影响的主要基础因素。> 5 。我们的结果证实了大型陆生哺乳动物中捕食者与猎物相互作用的复杂性。捕食同一猎物物种的不同食肉动物,即使在相同的生态环境中,也可能由于捕食方式的直接影响而产生巨大的人口统计学影响。该分析框架在其他地理和生态环境中也需要类似的应用,但是还需要对该主题进行更一般的评估,目的是在更广泛的系统和生态学范围内评估食肉动物的哪些特定特征与之最相关。对猎物物种的潜在影响。

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