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检验生物地理边界的生态解释。

Testing ecological explanations for biogeographic boundaries.

机构信息

Department of Biology, University of Rochester, Rochester, New York 14620, USA.

出版信息

Evolution. 2011 Mar;65(3):673-83. doi: 10.1111/j.1558-5646.2010.01177.x. Epub 2010 Nov 25.

Abstract

Barriers to dispersal and resulting biogeographic boundaries are responsible for much of life's diversity. Distinguishing the contribution of ecological, historical, and stochastic processes to the origin and maintenance of biogeographic boundaries, however, is a longstanding challenge. Taking advantage of newly available data and methods--including environmental niche models and associated comparative metrics--we develop a framework to test two possible ecological explanations for biogeographic boundaries: (1) sharp environmental gradients and (2) ribbons of unsuitable habitat dividing two highly suitable regions. We test each of these hypotheses against the null expectation that environmental variation across a given boundary is no greater than expected by chance. We apply this framework to a pair of Hispaniolan Anolis lizards (A. chlorocyanus and A. coelestinus) distributed on the either side of this island's most important biogeographic boundary. Integrating our results with historical biogeographic analysis, we find that a ribbon of particularly unsuitable habitat is acting to maintain a boundary between species that initially diverged on distinct paleo-islands, which merged to form present-day Hispaniola in the Miocene.

摘要

扩散障碍和由此产生的生物地理边界是生命多样性的主要原因。然而,区分生态、历史和随机过程对生物地理边界的起源和维持的贡献是一个长期存在的挑战。利用新获得的数据和方法——包括环境生态位模型和相关的比较指标——我们开发了一个框架,以测试生物地理边界的两个可能的生态解释:(1) 急剧的环境梯度和 (2) 将两个高度适宜的区域分隔开来的不适宜栖息地带。我们将这两种假设与一个给定边界上的环境变化不比随机预期更大的零假设进行比较。我们将该框架应用于一对分布在该岛最重要生物地理边界两侧的伊斯帕尼奥拉岛蜥蜴 (A. chlorocyanus 和 A. coelestinus)。将我们的结果与历史生物地理分析相结合,我们发现,一条特别不适宜的栖息地带正在维持一个边界,将最初在不同古岛上分化的物种分开,这些古岛在中新世合并形成了现在的伊斯帕尼奥拉岛。

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