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Spatial and temporal variation in moss-associated dinitrogen fixation in coniferous- and deciduous-dominated Alaskan boreal forests

机译:在针叶树和落叶统治的阿拉斯加尔北部森林中苔藓相关的二煤固定的空间和时间变化

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Dominant canopy tree species have strong effects on the composition and function of understory species, particularly bryophytes. In boreal forests, bryophytes and their associated microbes are a primary source of ecosystem nitrogen (N) inputs, and an important process regulating ecosystem productivity. We investigated how feather moss-associated N-2-fixation rates and contribution to N budgets vary in time and space among coniferous and broadleaf deciduous forests. We measured N-2-fixation rates using stable isotope (N-15(2)) labeling in two moss species (Pleurozium schreberi and Hylocomium splendens) in broadleaf deciduous (Alaska paper birch-Betula neoalaskana) and coniferous (black spruce-Picea mariana) stands near Fairbanks, interior Alaska, from 2013 to 2015. N-2-fixation rates showed substantial inter-annual variation among the 3 years. High N-2-fixation was more strongly associated with high precipitation than air temperature or light availability. Overall, contribution of N-2-fixation to N budgets was greater in spruce than in birch stands. Our results enhance the knowledge of the processes that drive N-2-fixation in boreal forests, which is important for predicting ecosystem consequences of changing forest composition.
机译:主导冠层树物种对床骨,特别是苔藓植物的组成和功能具有很强的影响。在北部森林中,苔藓植物及其相关的微生物是生态系统氮气(n)投入的主要来源,以及调节生态系统生产率的重要过程。我们调查了羽毛苔藓相关的N-2固定率如何以及对N预算的贡献在针叶和阔叶落叶林中的时间和空间中变化。我们使用稳定的同位素(N-15(2))标记在阔莱特落叶(阿拉斯加纸桦树桦树基斯巴纳)和针叶树(黑云杉 - Picea Mariana)中使用稳定的同位素(N-15(2))标记(N-15(2))标记(N-15(2))标记(Pleurozium Schreberi和Hylocomium Splendens)标记)从2013年至2013年到2013年到2015年,靠近Fairbanks,Interior Alaska,N-2固定率在3年内显示了大量的年度差异。与空气温度或光可用性高,高N-2固定更强烈地与高沉淀相关。总体而言,N-2固定对N预算的贡献大于云氏菌在云杉中更大。我们的成果提高了在北方森林中推动N-2固定的过程的知识,这对于预测改变森林成分的生态系统后果至关重要。

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