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Will climate change alter Arctic nitrogen budgets? Impacts of warming and fertilization on nitrogen fixing microbial communities at Alexandra Fiord, Ellesmere Island, Nunavut.

机译:气候变化会改变北极的氮预算吗?努纳武特州Ellesmere岛Alexandra Fiord的变暖和施肥对固氮微生物群落的影响。

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摘要

The impacts of simulated climate change (warming and fertilization treatments) on diazotroph community structure and activity were investigated at Alexandra Fiord, Ellesmere Island, Canada. Open Top Chambers were randomly placed in a dwarf-shrub, cushion-plant dominated mesic tundra site in 1995. In 2000 and 2001 20N: 20P2O5: 20K2O fertilizer was applied at a rate of 5 g m-2year-1. Estimates of nitrogen fixation rates were made in the field by Acetylene Reduction Assays (ARA). Higher rates of N-fixation were observed 19-35 days post-fertilization but were otherwise unaffected by treatments and we hypothesize that microsite variation was a greater determinant of N-fixation rate than were the treatments applied. 'Nif'H genes were amplified from bulk soil DNA and analyzed by Terminal Restriction Fragment Length Polymorphism (T-RFLP) analysis. Nonmetric Multidimensional Scaling (NMS) was used to ordinate treatment plots in 'nif'H genotype space. 'Nif'H gene communities were more strongly structured by warming treatment late in the growing season, suggesting that an annual succession in diazotroph community composition occurs. [delta]15N analysis of plant and soil material from each treatment plot suggests that evergreen dwarf shrubs will depend more heavily on organic-N derived from mycorrhizae in warmer climates and that relative importance of symbiotic nitrogen fixation to the N-nutrition of 'D. integrifolia' will decline at this site.
机译:在加拿大埃尔斯米尔岛的亚历山德拉·菲尔德研究了模拟气候变化(增温和施肥)对重氮营养菌群落结构和活性的影响。 1995年将开放式顶室随机放置在矮灌木,垫层植物为主的中性苔原地带。在2000年和2001年,以5 g m-2year-1的比例施用20N:20P2O5:20K2O肥料。通过乙炔还原测定法(ARA)在野外估算固氮率。受精后19-35天观察到较高的固氮率,但未受治疗的影响,我们假设微位点变化是决定固氮率的重要因素。从大量土壤DNA中扩增出“ Nif” H基因,并通过末端限制性片段长度多态性(T-RFLP)分析进行了分析。使用非度量多维标度(NMS)来对“ nif” H基因型空间中的治疗图进行纵坐标处理。通过在生长期后期进行加温处理,'Nif'H基因群落的结构更加牢固,这表明重氮营养菌群落组成每年都在发生变化。来自每个处理区的植物和土壤物质的δ15 N分析表明,在较温暖的气候下,常绿矮灌木丛将更严重地依赖于菌根来源的有机氮,并且共生固氮对'D的N营养的相对重要性。 integrifolia”将在此站点上下降。

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