Technische Universität Darmstadt, Institute for condensed matter physics, Hochschulstr. 6, Darmstadt, 64289, Germany.
UC Davis, Department of Computer Science, 1 Shields Av, Davis, Ca, 95616, USA.
Sci Rep. 2019 Aug 22;9(1):12268. doi: 10.1038/s41598-019-48731-y.
Identifying stabilizing factors in foodwebs is a long standing challenge with wide implications for community ecology and conservation. Here, we investigate the stability of spatially resolved meta-foodwebs with far-ranging super-predators for whom the whole meta-foodwebs appears to be a single habitat. By using a combination of generalized modeling with a master stability function approach, we are able to efficiently explore the asymptotic stability of large classes of realistic many-patch meta-foodwebs. We show that meta-foodwebs with far-ranging top predators are more stable than those with localized top predators. Moreover, adding far-ranging generalist top predators to a system can have a net stabilizing effect. These results highlight the importance of top predator conservation.
确定食物网中的稳定因素是一个长期存在的挑战,对群落生态学和保护具有广泛的影响。在这里,我们研究了具有广泛超级掠食者的空间分辨元食物网的稳定性,对于这些超级掠食者来说,整个元食物网似乎是一个单一的栖息地。通过使用广义模型与主稳定性函数方法相结合,我们能够有效地探索大型真实多斑块元食物网的渐近稳定性。我们表明,具有广泛分布的顶级掠食者的元食物网比具有局部化顶级掠食者的元食物网更稳定。此外,向系统中添加广泛分布的一般掠食者可以产生净稳定效果。这些结果强调了保护顶级掠食者的重要性。