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首页> 外文期刊>The New Phytologist >Contrasting trait responses in plant communities to experimental and geographic variation in precipitation
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Contrasting trait responses in plant communities to experimental and geographic variation in precipitation

机译:植物群落对降水的实验和地理变化的不同性状响应

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P>Patterns of precipitation are likely to change significantly in the coming century, with important but poorly understood consequences for plant communities. Experimental and correlative studies may provide insight into expected changes, but little research has addressed the degree of concordance between these approaches.We synthesized results from four experimental water addition studies with a correlative analysis of community changes across a large natural precipitation gradient in the United States. We investigated whether community composition, summarized with plant functional traits, responded similarly to increasing precipitation among studies and sites.In field experiments, increased precipitation favored species with small seed size, short leaf life span and high leaf nitrogen (N) concentration. However, with increasing precipitation along the natural gradient, community composition shifted towards species with higher mean seed mass, longer leaf life span and lower leaf N concentrations.The differences in temporal and spatial scale of experimental manipulations and natural gradients may explain these contrasting results. Our results highlight the complexity of responses to climate change, and suggest that transient dynamics may not reflect long-term shifts in functional diversity and community composition. We propose a model of community change that incorporates these differences between short- and long-term responses to climate change.
机译:在未来的一个世纪中,降水的模式可能会发生重大变化,这对植物群落将产生重要但尚不为人所知的后果。实验和相关研究可能会提供有关预期变化的见识,但很少有研究解决这些方法之间的协调程度。我们综合了四项实验性加水研究的结果,并对美国大自然降水梯度上的群落变化进行了相关分析。 。我们调查了以植物功能性状概括的群落组成是否对研究和地点之间的降水增加有类似反应。在田间试验中,增加的降水有利于种子尺寸小,叶片寿命短和叶片氮(N)浓度高的物种。但是,随着降水沿自然梯度增加,群落组成向平均种子质量更高,叶片寿命更长和叶片氮浓度更低的物种转移。实验操作和自然梯度在时空尺度上的差异可能解释了这些相反的结果。我们的结果强调了应对气候变化的复杂性,并表明瞬态动力学可能无法反映功能多样性和社区组成的长期变化。我们提出了一个社区变化模型,该模型将对气候变化的短期和长期反应之间的差异纳入其中。

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