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连接跨尺度的模式和过程:尺度转换理论在岩质海岸藻类动态中的应用。

Linking patterns and processes across scales: the application of scale-transition theory to algal dynamics on rocky shores.

机构信息

Department of Biology, University of Pisa, CoNISMa, Via Derna 1, Pisa, Italy.

出版信息

J Exp Biol. 2012 Mar 15;215(Pt 6):977-85. doi: 10.1242/jeb.058826.

Abstract

Understanding how species and environments respond to global anthropogenic disturbances is one of the greatest challenges for contemporary ecology. The ability to integrate modeling, correlative and experimental approaches within individual research programs will be key to address large-scale, long-term environmental problems. Scale-transition theory (STT) enables this level of integration, providing a powerful framework to link ecological patterns and processes across spatial and temporal scales. STT predicts the large-scale (e.g. regional) behavior of a system on the basis of nonlinear population models describing local (e.g. patch-scale) dynamics and the interaction between these nonlinearities and spatial variation in population abundance or environmental conditions. Here we use STT to predict the dynamics of turf-forming algae on rocky shores at Capraia Island, in the northwest Mediterranean. We developed a model of algal turf dynamics based on density-dependent growth that included the effects of local interactions with canopy algae. The model was parameterized with field data and used to scale up the dynamics of algal turfs from the plot scale (20×20 cm) to the island scale (tens of km). The interaction between nonlinear growth and spatial variance in cover of turfing algae emerged as a key term to translate the local dynamics up to the island scale. The model successfully predicted short-term and long-term mean values of turf cover estimated independently from a separate experiment. These results illustrate how STT can be used to identify the relevant mechanisms that drive large-scale changes in ecological communities. We argue that STT can contribute significantly to the connection between biomechanics and ecology, a synthesis that is at the core of the emerging field of ecomechanics.

摘要

理解物种和环境如何应对全球人为干扰是当代生态学面临的最大挑战之一。在单个研究计划中整合建模、相关和实验方法的能力将是解决大规模、长期环境问题的关键。尺度转换理论(STT)实现了这种整合水平,为跨时空尺度链接生态模式和过程提供了一个强大的框架。STT 基于描述局部(例如斑块尺度)动态的非线性种群模型,并基于这些非线性和种群丰度或环境条件的空间变化之间的相互作用,预测系统的大尺度(例如区域)行为。在这里,我们使用 STT 来预测西北地中海卡普拉亚岛岩质海岸上草坪状藻类的动态。我们开发了一个基于密度依赖生长的藻类草坪动态模型,其中包括与冠层藻类的局部相互作用的影响。该模型使用现场数据进行参数化,并用于将藻类草坪的动态从斑块尺度(20×20cm)扩展到岛屿尺度(数十公里)。非线性生长和草坪状藻类覆盖的空间变化之间的相互作用成为将局部动态转化为岛屿尺度的关键术语。该模型成功预测了从单独的实验中独立估算的草坪覆盖的短期和长期平均值。这些结果说明了 STT 如何用于确定驱动生态群落大尺度变化的相关机制。我们认为,STT 可以为生物力学和生态学之间的联系做出重大贡献,这一综合是新兴生态力学领域的核心。

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