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通过种内和种间正负相互作用实现的群落组装的替代稳定状态和替代终态。

Alternative stable states and alternative endstates of community assembly through intra- and interspecific positive and negative interactions.

作者信息

Gerla Daan J, Mooij Wolf M

机构信息

Department of Aquatic Ecology, Netherlands Institute of Ecology (NIOO-KNAW), P.O. Box 50, 6700 AB Wageningen, The Netherlands.

Department of Aquatic Ecology, Netherlands Institute of Ecology (NIOO-KNAW), P.O. Box 50, 6700 AB Wageningen, The Netherlands; Aquatic Ecology and Water Quality Management Group, Department of Environmental Sciences, Wageningen University, P.O. Box 47, 6700 AA Wageningen, The Netherlands.

出版信息

Theor Popul Biol. 2014 Sep;96:8-18. doi: 10.1016/j.tpb.2014.07.001. Epub 2014 Jul 10.

Abstract

Positive and negative interactions within and between species may occur simultaneously, with the net effect depending on population densities. For instance, at low densities plants may ameliorate stress, while competition for resources dominates at higher densities. Here, we propose a simple two-species model in which con- and heterospecifics have a positive effect on per capita growth rate at low densities, while negative interactions dominate at high densities. The model thus includes both Allee effects (intraspecific positive effects) and mutualism (interspecific positive effects), as well as intra- and interspecific competition. Using graphical methods we derive conditions for alternative stable states and species coexistence. We show that mutual non-invasibility (i.e. the inability of each species to invade a population of the other) is more likely when species have a strong positive effect on the own species or a strong negative effect on the other species. Mutual non-invasibility implies alternative stable states, however, there may also be alternative stable states at which species coexist. In the case of species symmetry (i.e. when species are indistinguishable), such alternative coexistence states require that if the positive effect exerted at low densities at the own species is stronger than on the other species, the negative effect at higher densities is also stronger on the own species than on the other species, or, vice versa, if the interspecific positive effects at low densities are stronger than the intraspecific effects, the negative effects at higher densities are also stronger between species than within species. However, the reachability of alternative stable states is restricted by the frequency and density at which species are introduced during community assembly, so that alternative stable states do not always represent alternative endstates of community assembly.

摘要

物种内部以及物种之间的正负相互作用可能同时发生,其净效应取决于种群密度。例如,在低密度时植物可能会缓解压力,而在高密度时资源竞争则占主导地位。在此,我们提出一个简单的双物种模型,其中同种和异种在低密度时对人均增长率有正向影响,而在高密度时负向相互作用占主导。该模型因此既包括阿利效应(种内正向效应)和互利共生(种间正向效应),也包括种内和种间竞争。我们使用图形方法推导了替代稳定状态和物种共存的条件。我们表明,当物种对自身物种有强烈的正向影响或对其他物种有强烈的负向影响时,相互不可入侵性(即每个物种都无法入侵另一个物种的种群)更有可能出现。相互不可入侵性意味着替代稳定状态,然而,也可能存在物种共存的替代稳定状态。在物种对称的情况下(即当物种难以区分时),这种替代共存状态要求,如果在低密度时对自身物种施加的正向效应强于对其他物种的正向效应,那么在高密度时对自身物种的负向效应也强于对其他物种的负向效应,或者反之,如果在低密度时种间正向效应强于种内效应,那么在高密度时种间负向效应也强于种内负向效应。然而,替代稳定状态的可达性受到群落组装过程中引入物种的频率和密度的限制,因此替代稳定状态并不总是代表群落组装的替代终态。

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