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通过群落气候框架将环境过滤和非平衡与生物地理学联系起来。

Linking environmental filtering and disequilibrium to biogeography with a community climate framework.

作者信息

Blonder Benjamin, Nogués-Bravo David, Borregaard Michael K, Donoghue John C, Jørgensen Peter M, Kraft Nathan J B, Lessard Jean-Philippe, Morueta-Holme Naia, Sandel Brody, Svenning Jens-Christian, Violle Cyrille, Rahbek Carsten, Enquist Brian J

出版信息

Ecology. 2015 Apr;96(4):972-85. doi: 10.1890/14-0589.1.

Abstract

We present a framework to measure the strength of environmental filtering and disequilibrium of the species composition of a local community across time, relative to past, current, and future climates. We demonstrate the framework by measuring the impact of climate change on New World forests, integrating data for climate niches of more than 14000 species, community composition of 471 New World forest plots, and observed climate across the most recent glacial-interglacial interval. We show that a majority of communities have species compositions that are strongly filtered and are more in equilibrium with current climate than random samples from the regional pool. Variation in the level of current community disequilibrium can be predicted from Last Glacial Maximum climate and will increase with near-future climate change.

摘要

我们提出了一个框架,用于衡量当地群落物种组成随时间变化相对于过去、当前和未来气候的环境过滤强度和非平衡状态。我们通过测量气候变化对新大陆森林的影响来演示该框架,整合了超过14000个物种的气候生态位数据、471个新大陆森林样地的群落组成数据以及最近一次冰期-间冰期的观测气候数据。我们发现,大多数群落的物种组成受到强烈过滤,且与当前气候的平衡程度高于从区域物种库中随机抽取的样本。当前群落非平衡水平的变化可以根据末次盛冰期气候预测,并且会随着近期气候变化而增加。

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