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首页> 外文期刊>Biology Letters >The effect of altered macroclimate on N-fixation by boreal feather mosses
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The effect of altered macroclimate on N-fixation by boreal feather mosses

机译:改变宏观监会对北部羽毛苔藓n固定的影响

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Plant productivity is predicted to increase in boreal forests owing to climate change, but this may depend on whether N inputs from biological N-fixation also increases. We evaluated how alteration of climatic factors affects N input fromawidespread boreal N-fixer, i.e. cyanobacteria associated with the feather moss Pleurozium schreberi. In each of 10 forest stands in northern Sweden, we established climate-change plots, including a control (ambient climate) plot and three plots experiencing a +2 degrees C temperature increase, an approximately threefold reduction in precipitation frequency, and either 0.07, 0.29 or 1.16 times normal summer precipitation. We monitored N-fixation in these plots five times between 2007 and 2009, and three times in 2010 after climate treatments ended to assess their recovery. Warmer temperatures combined with less frequent precipitation reduced feather moss moisture content and N-fixation rates regardless of total precipitation. After climate treatments ended, recovery of N-fixation rates occurred on the scale of weeks to months, suggesting resilience of N-fixation to changes in climatic conditions. These results suggest that modelling of biological N-inputs in boreal forests should emphasize precipitation frequency and evaporative water loss in conjunction with elevated temperature rather than absolute changes in mean precipitation.
机译:由于气候变化,预计植物生产率将增加北方林林,但这可能取决于生物N-固定的N个输入也增加。我们评估了气候因子的改变如何影响n个输入偏离北固定剂,即与羽毛苔藓胸膜肺腹相关的肌菌。在瑞典北部的10个森林中,我们建立了气候变化的地块,包括控制(环境气候)绘图和三个地块,经历+2℃的温度升高,降水频率大约三倍,0.07,0.29或正常夏季降水的1.16倍。我们在2007年至2009年期间在这些地块中监测了N-固定,并在2010年期间在气候治疗结束时进行了三次,以评估其恢复。温暖的温度与较少频繁的降水降低减少羽毛苔藓含水量和N-固定速率,无论总沉淀如何。在气候治疗结束后,将N-固定率的回收率发生在数周至数月的规模中,表明对气候条件的变化进行了N-固定的恢复性。这些结果表明,北方森林中生物N型的建模应强调沉淀频率和蒸发水分与升高的温度,而不是平均沉淀的绝对变化。

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