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首页> 外文期刊>Nature Ecology & Evolution >Global trait-environment relationships of plant communities
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Global trait-environment relationships of plant communities

机译:全球trait-environment植物的关系社区

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摘要

Plant functional traits directly affect ecosystem functions. At the species level, trait combinations depend on trade-offs representing different ecological strategies, but at the community level trait combinations are expected to be decoupled from these trade-offs because different strategies can facilitate co-existence within communities. A key question is to what extent community-level trait composition is globally filtered and how well it is related to global versus local environmental drivers. Here, we perform a global, plot-level analysis of trait-environment relationships, using a database with more than 1.1 million vegetation plots and 26,632 plant species with trait information. Although we found a strong filtering of 17 functional traits, similar climate and soil conditions support communities differing greatly in mean trait values. The two main community trait axes that capture half of the global trait variation (plant stature and resource acquisitiveness) reflect the trade-offs at the species level but are weakly associated with climate and soil conditions at the global scale. Similarly, within-plot trait variation does not vary systematically with macro-environment. Our results indicate that, at fine spatial grain, macro-environmental drivers are much less important for functional trait composition than has been assumed from floristic analyses restricted to co-occurrence in large grid cells. Instead, trait combinations seem to be predominantly filtered by local-scale factors such as disturbance, fine-scale soil conditions, niche partitioning and biotic interactions.
机译:植物功能性状直接影响生态系统功能。组合取决于权衡代表不同的生态策略,但在社区层面特征组合料从这些权衡,因为解耦不同的策略可以促进共存在社区内。社区特征组合在全球范围内过滤以及它是如何相关全球和当地环境的司机。我们执行一个全球,plot-level分析trait-environment关系,使用数据库有超过110万植被情节和26632植物物种特征信息。尽管我们发现一个强大的过滤17岁功能特征,相似的气候和土壤条件支持社区大大不同在特征值。特征轴,捕捉一半的全球特征变化(植物的地位和资源占有欲)反映的权衡物种水平,但弱相关在全球范围内的气候和土壤条件。同样,within-plot特征变化没有不同系统的宏观经济环境。结果表明,在空间细晶粒,宏观环境司机少得多重要的功能特质构成比已经从植物区系分析假设在大型网格细胞局限于同现。相反,似乎特征组合主要是由局部范围因素过滤如干扰、精细的土壤条件,利基分区和生物相互作用。

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