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通过对群落结构的定性分析来理解和预测修饰相互作用的影响。

Understanding and predicting effects of modified interactions through a qualitative analysis of community structure.

作者信息

Dambacher Jeffrey M, Ramos-Jiliberto Rodrigo

机构信息

CSIRO Marine and Atmospheric Research GPO Box 1538, Hobart, Tasmania 7001, Australia.

出版信息

Q Rev Biol. 2007 Sep;82(3):227-50. doi: 10.1086/519966.

Abstract

Models of ecological communities are traditionally based on relationships between pairs of species, where the strengths of per capita interactions are fixed and independent of population abundance. A growing body of literature, however; describes interactions whose strength is modified by the density of either a third species or by one of the species involved in a pairwise interaction. These modified interactions have been treated as indirect effects, and the terminology addressing them is diverse and overlapping. In this paper we develop a general analytical framework based on a qualitative analysis of community structure to account for the consequence of modified interactions in complex ecological communities. Modified interactions are found to create both direct and indirect effects between species. The sign of a direct effect can change in some instances depending on the magnitude of a key variable or parameter, which leads to a threshold change in system structure and dynamics. By considering alternative structures of a community, we extend our ability to model perturbations that move the system far from a previous equilibrium. Using specific examples, we reinterpret existing results, develop hypotheses to guide experiments or management interventions, and explore the role of modified interactions and positive feedback in creating and maintaining alternative stable states. Through a qualitative analysis of community structure, system feedback is demonstrated as being key in understanding and predicting the dynamics of complex ecological communities.

摘要

传统上,生态群落模型是基于物种对之间的关系构建的,其中人均相互作用的强度是固定的,且与种群丰度无关。然而,越来越多的文献描述了这样的相互作用,其强度会因第三种物种的密度或因参与成对相互作用的物种之一的密度而改变。这些经过修正的相互作用被视为间接效应,并且用于描述它们的术语多样且相互重叠。在本文中,我们基于对群落结构的定性分析,开发了一个通用的分析框架,以解释复杂生态群落中修正相互作用的后果。研究发现,修正的相互作用会在物种之间产生直接和间接效应。在某些情况下,直接效应的符号可能会根据关键变量或参数的大小而改变,这会导致系统结构和动态的阈值变化。通过考虑群落的替代结构,我们扩展了对使系统远离先前平衡的扰动进行建模的能力。我们通过具体例子重新解释现有结果,提出假设以指导实验或管理干预,并探讨修正相互作用和正反馈在创造和维持替代稳定状态中的作用。通过对群落结构的定性分析,系统反馈被证明是理解和预测复杂生态群落动态的关键。

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