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首页> 外文期刊>Global change biology >Mammalian herbivory shapes intraspecific trait responses to warmer climate and nutrient enrichment
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Mammalian herbivory shapes intraspecific trait responses to warmer climate and nutrient enrichment

机译:哺乳动物草食病形状造型的特质反应升温气候和营养丰富

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Variation in intraspecific traits is one important mechanism that can allow plant species to respond to global changes. Understanding plant trait responses to environmental changes such as grazing patterns, nutrient enrichment and climate warming is, thus, essential for predicting the composition of future plant communities. We measured traits of eight common tundra species in a fully factorial field experiment with mammalian herbivore exclusion, fertilization, and passive warming, and assessed how trait responsiveness to the treatments was associated with abundance changes in those treatments. Herbivory exhibited the strongest impact on traits. Exclusion of herbivores increased vegetative plant height by 50% and specific leaf area (SLA) by 19%, and decreased foliar C:N by 11%; fertilization and warming also increased height and SLA but to a smaller extent. Herbivory also modulated intraspecific height, SLA and foliar C:N responses to fertilization and warming, and these interactions were species-specific. Furthermore, herbivory affected how trait change translated into relative abundance change: increased height under warming and fertilization was more positively related to abundance change inside fences than in grazed plots. Our findings highlight the key role of mammalian herbivory when assessing intraspecific trait change in tundra and its consequences for plant performance under global changes.
机译:内部特征的变异是一种重要机制,可以允许植物物种响应全球变化。了解植物特质对环境变化的反应,如放牧模式,养分富集和气候变暖,因此对于预测未来植物社区的组成是必不可少的。我们在哺乳动物中源性野外实验中测量了八种常见苔原种类的特性,哺乳动物中草嫌量排除,施肥和被动变暖,并评估了如何对这些治疗的性能如何与这些治疗的丰富变化有关。食草动物对特质的影响最强。将食草动物排除营养植物高度50%和特定的叶面积(SLA)增加19%,叶酸C:n减少11%;施肥和升温也增加了高度和SLA,但程度较小。草本病变还调制内部高度,SLA和叶面C:n对施肥和变暖的反应,这些相互作用是特异性的。此外,草食病影响了特征变化转化为相对丰度变化的变化:加热和施肥的增加高度与围栏内部的丰富变化更积极地相关。我们的调查结果强调了哺乳动物草食病在评估苔原的内部特性变化时的关键作用及其在全球变化下的工厂绩效后果。

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