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封套之外:稀有事件扰乱气候因素与物种相互作用之间的关系。

Outside the envelope: rare events disrupt the relationshipbetween climate factors and species interactions.

机构信息

Department of Plant Sciences, University of California, Davis, California, 95616, USA.

The Holden Arboretum, Kirtland, Ohio, 44094, USA.

出版信息

Ecology. 2017 Jun;98(6):1623-1630. doi: 10.1002/ecy.1820.

Abstract

The order in which species arrive during community assembly can be an important driver of community composition and function. However, the strength of these priority effects can be variable, in part because of strong site and year effects. To understand how priority effects vary in importance with abiotic conditions, we initiated identical community assembly experiments in which we varied the timing of arrival of native and exotic grass species in each of 4 yr across three grassland sites in northern California. This uniquely replicated experiment tested the power of priority to determine initial community structure in a restoration context across a natural range of conditions. There were large and significant differences in both total seeded cover and the strength of priority across sites and years of initiation, confirming the suspicion that most ecological experiments may lack spatial and temporal generality. On the other hand, much of the variation in strength of priority could be related to climate. Strikingly, however, the model fit across the three sites and the first 3 yr of the study (the first nine experiments) was radically altered when we included the fourth year, which was characterized by an unusual weather pattern with higher temporal variability in rainfall (a rainfall pattern predicted to increase with climate change). This year produced relatively low strength of priority, supporting the suggestion that highly variable climates may be associated with lower strength of priority effects. Experiments that examine community assembly over a range of naturally occurring abiotic conditions enhance our ability to predict when priority effects will be important, allowing us to explore shifting patterns of community assembly in the face of climate change and optimize restoration strategies based on environmental conditions.

摘要

在群落组装过程中,物种的到达顺序可能是群落组成和功能的重要驱动因素。然而,这些优先效应的强度可能会有所不同,部分原因是强烈的地点和年份效应。为了了解优先效应在多大程度上随着非生物条件的变化而变化,我们在加利福尼亚州北部的三个草原地点进行了 4 年的相同群落组装实验,在每个实验中都改变了本地和外来草种到达的时间。这种独特的复制实验在自然条件范围内的恢复背景下,检验了优先作用决定初始群落结构的能力。在各个地点和起始年份,总播种覆盖率和优先强度都存在很大且显著的差异,这证实了大多数生态实验可能缺乏空间和时间普遍性的怀疑。另一方面,优先强度的大部分变化可能与气候有关。然而,令人惊讶的是,当我们包括第四年(即第九个实验)时,三个地点和研究的前 3 年(前 9 个实验)的模型拟合情况发生了根本改变,第四年的降雨时间变化较大,降雨量模式预计会随着气候变化而增加。这一年产生的优先强度相对较低,支持了这样一种观点,即高度可变的气候可能与较低的优先效应强度有关。在一系列自然发生的非生物条件下检验群落组装的实验增强了我们预测优先效应何时重要的能力,使我们能够探索在气候变化面前群落组装模式的变化,并根据环境条件优化恢复策略。

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