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A gradient of nutrient enrichment reveals nonlinear impacts of fertilization on Arctic plant diversity and ecosystem function

机译:养分富集的梯度揭示了施肥对北极植物多样性和生态系统功能的非线性影响

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Abstract Rapid environmental change at high latitudes is predicted to greatly alter the diversity, structure, and function of plant communities, resulting in changes in the pools and fluxes of nutrients. In Arctic tundra, increased nitrogen (N) and phosphorus (P) availability accompanying warming is known to impact plant diversity and ecosystem function; however, to date, most studies examining Arctic nutrient enrichment focus on the impact of relatively large (>25x estimated naturally occurring N enrichment) doses of nutrients on plant community composition and net primary productivity. To understand the impacts of Arctic nutrient enrichment, we examined plant community composition and the capacity for ecosystem function (net ecosystem exchange, ecosystem respiration, and gross primary production) across a gradient of experimental N and P addition expected to more closely approximate warming-induced fertilization. In addition, we compared our measured ecosystem CO 2 flux data to a widely used Arctic ecosystem exchange model to investigate the ability to predict the capacity for CO 2 exchange with nutrient addition. We observed declines in abundance-weighted plant diversity at low levels of nutrient enrichment, but species richness and the capacity for ecosystem carbon uptake did not change until the highest level of fertilization. When we compared our measured data to the model, we found that the model explained roughly 30%?¢????50% of the variance in the observed data, depending on the flux variable, and the relationship weakened at high levels of enrichment. Our results suggest that while a relatively small amount of nutrient enrichment impacts plant diversity, only relatively large levels of fertilization?¢????over an order of magnitude or more than warming-induced rates?¢????significantly alter the capacity for tundra CO 2 exchange. Overall, our findings highlight the value of measuring and modeling the impacts of a nutrient enrichment gradient, as warming-related nutrient availability may impact ecosystems differently than single-level fertilization experiments.
机译:摘要预计高纬度的快速环境变化大大改变了植物社区的多样性,结构和功能,导致营养素的池和源源的变化。在北极苔原中,已知伴随着植物多样性和生态系统函数的增加的氮气(n)和磷(p)可用性;然而,迄今为止,大多数研究检查北极养分富集的重点是对植物群落组成和净初级生产率的相对大(25倍估计天然存在的N富集)的影响。要了解北极养分富集的影响,我们研究了植物群落组成和生态系统功能的能力(净生态系统交换,生态系统呼吸和总初级生产),在实验性N和P添加预期的预测诱导更近似施肥。此外,我们将测量的生态系统CO 2通量数据与广泛使用的北极生态系统交流模型进行了比较,以研究预测CO 2交换能力的能力,并添加营养添加。我们观察到在低水平的营养丰富水平的丰富加权植物多样性下降,但物种丰富性和生态系统碳摄取的能力在最高水平的施肥直至施肥程度没有改变。当我们将测量数据与模型进行比较时,我们发现该模型大约为30%?¢????观察到的数据的差异的50%,这取决于磁通量变量,并且这种关系在高水平的富含浓度下削弱。我们的研究结果表明,虽然营养丰富的营养丰富影响植物多样性相对较大,但施肥量相对较大?¢????超过温暖诱导的速率?¢--???显着改变了容量对于苔原二氧化碳交易所。总体而言,我们的研究结果突出了测量和建模营养丰富梯度的影响的价值,因为温暖相关的营养可用性可能会影响生态系统,而不是单层施肥实验。

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