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Foliar Nitrogen Responses to Elevated Atmospheric Nitrogen Deposition in Nine Temperate Forest Canopy Species

机译:九种温带森林冠层物种叶片氮素对大气氮沉降升高的响应

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Despite its ecological importance, broad-scale use of foliar nitrogen as an indicator of ecosystem response to atmospheric N deposition has heretofore been obscured by its poorly understood intrinsic variability through time, space, and across species. We used a regional survey of foliar N conducted within a single growing season to observe that eight of nine major canopy tree species had increased foliar N in response to a gradient of N deposition in the Adirondack Park, New York. These results (1) add important foliar N evidence to support N saturation theory, (2) strongly reinforce the conclusion that N deposition is affecting the N status of forest ecosystems in the northeastern U.S., and (3) extend N saturation theory by identifying that temperate forest canopy species differ in their foliar N response to N deposition. Interestingly, species-specific differences were strongly related to two functional traits that arise from within-leaf allocations of N resources-leaf mass per area (LMA) and shade tolerance. Thus, combining species-specific knowledge of these functional traits with existing foliar N-centered remote sensing and ecosystem modeling approaches may provide a much-needed avenue to make broad-scale assessments of how persistently elevated rates of N deposition will continue to affect temperate forest ecosystems.
机译:尽管其具有生态重要性,但迄今为止人们对叶氮在时间,空间和整个物种内的内在变异性了解甚少,从而使人们无法广泛使用叶氮作为生态系统对大气氮沉降的反应指标。我们使用了在一个生长季节内进行的叶面N区域调查,观察到九个主要树冠树种中有八个在响应于纽约阿迪朗达克公园中的N沉积梯度后增加了叶面N。这些结果(1)添加了重要的叶面N证据以支持N饱和度理论;(2)强烈证实了N沉积影响美国东北部森林生态系统N状况的结论;(3)通过确定N饱和度理论来扩展N饱和度理论温带森林冠层物种对氮沉降的叶面氮响应不同。有趣的是,特定于物种的差异与两个功能性状密切相关,这两个功能性状是由N个资源的叶内分配-叶面积/面积(LMA)和阴影耐受性引起的。因此,将这些功能性状的物种特有知识与现有的以叶面N为中心的遥感和生态系统建模方法相结合,可以提供一个急需的途径,以进行广泛的评估,即持续增加的N沉积速率将如何继续影响温带森林生态系统。

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