Ecology and Evolution, University of Chicago, 1101 East 57th Street, Chicago, Illinois 60637, USA.
Computation Institute, University of Chicago, Chicago, Illinois, USA.
Nature. 2017 Aug 10;548(7666):210-213. doi: 10.1038/nature23273. Epub 2017 Jul 26.
Ecologists have long sought a way to explain how the remarkable biodiversity observed in nature is maintained. On the one hand, simple models of interacting competitors cannot produce the stable persistence of very large ecological communities. On the other hand, neutral models, in which species do not interact and diversity is maintained by immigration and speciation, yield unrealistically small fluctuations in population abundance, and a strong positive correlation between a species' abundance and its age, contrary to empirical evidence. Models allowing for the robust persistence of large communities of interacting competitors are lacking. Here we show that very diverse communities could persist thanks to the stabilizing role of higher-order interactions, in which the presence of a species influences the interaction between other species. Although higher-order interactions have been studied for decades, their role in shaping ecological communities is still unclear. The inclusion of higher-order interactions in competitive network models stabilizes dynamics, making species coexistence robust to the perturbation of both population abundance and parameter values. We show that higher-order interactions have strong effects in models of closed ecological communities, as well as of open communities in which new species are constantly introduced. In our framework, higher-order interactions are completely defined by pairwise interactions, facilitating empirical parameterization and validation of our models.
生态学家长期以来一直试图寻找一种方法来解释自然界中观察到的非凡生物多样性是如何维持的。一方面,相互竞争的简单模型不能产生非常大的生态群落的稳定持续。另一方面,中性模型认为物种之间没有相互作用,多样性是由移民和物种形成维持的,这导致种群丰度的波动非常小,而且物种的丰度与其年龄之间呈强烈的正相关,这与经验证据相悖。缺乏允许相互竞争的大型群落稳健持续的模型。在这里,我们表明,非常多样化的群落可以通过更高阶相互作用的稳定作用而持续存在,其中一个物种的存在会影响其他物种之间的相互作用。尽管高阶相互作用已经研究了几十年,但它们在塑造生态群落中的作用仍不清楚。将高阶相互作用纳入竞争网络模型可以稳定动态,使物种共存对种群丰度和参数值的扰动具有鲁棒性。我们表明,高阶相互作用在封闭生态群落的模型中具有很强的影响,以及不断引入新物种的开放群落的模型中也具有很强的影响。在我们的框架中,高阶相互作用完全由成对相互作用定义,这有利于我们模型的经验参数化和验证。