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层级理论背景下的生态边界

Ecological boundaries in the context of hierarchy theory.

作者信息

Yarrow Matthew M, Salthe Stanley N

机构信息

Laboratorio de Modelación Ecológica, Departamento de Ciencias Ecológicas, Facultad de Ciencias, Universidad de Chile, Casilla 653 Las Palmeras 3425, Nuñoa, Santiago, Chile.

出版信息

Biosystems. 2008 Jun;92(3):233-44. doi: 10.1016/j.biosystems.2008.03.001. Epub 2008 Mar 12.

Abstract

Ecological boundaries have been described as being multiscalar or hierarchical entities. However, the concept of the ecological boundary has not been explicitly examined in the context of hierarchy theory. We explore how ecological boundaries might be envisioned as constituents of scalar hierarchical systems. Boundaries may be represented by the surfaces of constituents or as constituents themselves. Where surfaces would correspond to abrupt transition zones, boundary systems might be quite varied depending on hierarchical context. We conclude that hierarchy theory is compatible with a functional vision of ecological boundaries where functions can be largely represented as the processing or filtering of ecological signals. Furthermore, we postulate that emergent ecological boundaries that arise on a new hierarchical level may contribute to the overconnectedness of mature ecosystems. Nevertheless, a thermodynamic approach to the emergence and development of boundary systems does indicate that in many situations, ecological boundaries would persist in time by contributing to the energy production of higher hierarchical levels.

摘要

生态边界被描述为多尺度或层次化的实体。然而,生态边界的概念尚未在层次理论的背景下得到明确探讨。我们探究生态边界如何可能被设想为标量层次系统的组成部分。边界可以由组成部分的表面来表示,或者作为组成部分本身。在表面对应于 abrupt 过渡带的情况下,边界系统可能因层次背景而异。我们得出结论,层次理论与生态边界的功能视角是兼容的,在这种视角下,功能在很大程度上可以表示为生态信号的处理或过滤。此外,我们假设在新的层次水平上出现的新兴生态边界可能导致成熟生态系统的过度连通性。尽管如此,对边界系统出现和发展的热力学方法确实表明,在许多情况下,生态边界将通过促进更高层次水平的能量产生而在时间上持续存在。 (注:原文中“abrupt”未翻译,可能是有特定专业含义或拼写有误,需确认原文准确信息)

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