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从广义动态模型看海洋岛屿生物地理学:评估与展望。

Oceanic island biogeography through the lens of the general dynamic model: assessment and prospect.

机构信息

School of Geography and the Environment, University of Oxford, South Parks Road, OX1 3QY, Oxford, U.K.

Center for Macroecology, Evolution and Climate, National Museum of Natural History, University of Copenhagen, Universitetsparken 15, 2100, Copenhagen, Denmark.

出版信息

Biol Rev Camb Philos Soc. 2017 May;92(2):830-853. doi: 10.1111/brv.12256. Epub 2016 Feb 29.

Abstract

The general dynamic model of oceanic island biogeography (GDM) has added a new dimension to theoretical island biogeography in recognizing that geological processes are key drivers of the evolutionary processes of diversification and extinction within remote islands. It provides a dynamic and essentially non-equilibrium framework generating novel predictions for emergent diversity properties of oceanic islands and archipelagos. Its publication in 2008 coincided with, and spurred on, renewed attention to the dynamics of remote islands. We review progress, both in testing the GDM's predictions and in developing and enhancing ecological-evolutionary understanding of oceanic island systems through the lens of the GDM. In particular, we focus on four main themes: (i) macroecological tests using a space-for-time rationale; (ii) extensions of theory to islands following different patterns of ontogeny; (iii) the implications of GDM dynamics for lineage diversification and trait evolution; and (iv) the potential for downscaling GDM dynamics to local-scale ecological patterns and processes within islands. We also consider the implications of the GDM for understanding patterns of non-native species diversity. We demonstrate the vitality of the field of island biogeography by identifying a range of potentially productive lines for future research.

摘要

海洋岛屿生物地理学的通用动态模型(GDM)在认识到地质过程是远程岛屿内多样化和灭绝进化过程的关键驱动因素方面,为理论岛屿生物地理学增添了新的维度。它提供了一个动态的、本质上非平衡的框架,为海洋岛屿和群岛的新兴多样性特征生成了新的预测。该模型于 2008 年发表,恰逢并推动了人们对远程岛屿动态的重新关注。我们通过 GDM 的视角,回顾了在测试 GDM 的预测以及通过 GDM 发展和增强对海洋岛屿系统的生态进化理解方面的进展。特别是,我们重点关注四个主要主题:(i)使用空间代替时间的基本原理进行宏观生态学测试;(ii)将理论扩展到具有不同个体发生模式的岛屿;(iii)GDM 动态对谱系多样化和特征进化的影响;以及(iv)将 GDM 动态下推到岛屿内的本地尺度生态模式和过程的潜力。我们还考虑了 GDM 对理解非本地物种多样性模式的影响。我们通过确定一系列未来可能具有生产力的研究方向,展示了岛屿生物地理学领域的活力。

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