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Plant community responses to nitrogen addition and increased precipitation: the importance of water availability and species traits

机译:植物群落对氮添加和降水增加的反应:水资源和物种特征的重要性

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摘要

Global nitrogen (N) enrichment and changing precipitation regimes are likely to alter plant community structure and composition, with consequent influences on biodiversity and ecosystem functioning. Responses of plant community structure and composition to N addition and increased precipitation were examined in a temperate steppe in northern China. Increased precipitation and N addition stimulated and suppressed community species richness, respectively, across 6 years (2005-2010) of the manipulative experiment. N addition and increased precipitation significantly altered plant community structure and composition at functional groups levels. The significant relationship between species richness and soil moisture (SM) suggests that plant community structure is mediated by water under changing environmental conditions. In addition, plant height played an important role in affecting the responses of plant communities to N addition, and the effects of increased precipitation on plant community were dependent on species rooting depth. Our results highlight the importance and complexity of both abiotic (SM) and biotic factors (species traits) in structuring plant community under changing environmental scenarios. These findings indicate that knowledge of species traits can contribute to mechanistic understanding and projection of vegetation dynamics in response to future environmental change.
机译:全球氮素的富集和降水制度的变化可能会改变植物群落的结构和组成,从而影响生物多样性和生态系统的功能。在中国北方的温带草原上调查了植物群落结构和组成对氮素添加和降水增加的响应。在操纵实验的6年(2005-2010年)中,增加的降水量和增加的N分别刺激和抑制了群落物种的丰富度。氮的添加和降水的增加在功能组水平上显着改变了植物群落的结构和组成。物种丰富度与土壤水分(SM)之间的重要关系表明,在不断变化的环境条件下,植物群落结构是由水介导的。此外,株高在影响植物群落对氮添加的响应中起着重要作用,而降水增加对植物群落的影响取决于物种的生根深度。我们的结果强调了在不断变化的环境情景下,非生物(SM)和生物因子(物种性状)在构建植物群落中的重要性和复杂性。这些发现表明,物种特征的知识可以有助于对未来动态变化作出反应的机械理解和对植被动态的预测。

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