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Response of nitrogen cycling to simulated climate change: differentialresponses along a subalpine ecotone

机译:氮循环对模拟气候变化的响应:沿亚高山过渡带的差异响应

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摘要

In situ nitrogen (N) transformations and N availability were examined over a four-year period in two soil microclimates (xeric and mesic) under a climate-warming treatment in a subalpine meadow/sagebrush scrub ecotone. Experimental plots that spanned the two soil microclimates were exposed to an in situ infrared (IR) climate change manipulation at the Rocky Mountain Biological Laboratory, near Crested Butte, Colorado. Although the two microclimates did not differ significantly in their rates of N transformations in the absence of heating, they differed significantly in their response to increased IR. Under a simulated warming in the sagebrush-dominated xeric microclimate, gross N mineralization rates doubled and immobilization rates increased by up to 60% over the first 2 years of the study but declined to predisturbance rates by the fourth year. This temporal pattern of gross mineralization rates correlated with a decline in SOM. Concurrently, rates of net mineralization rates in the heated plots were 60% higher than the controls after the first year. There were no differences in gross or net nitrification rates with heating in the xeric soils. In contrast to the xeric microclimate, there were no significant effects of heating on any N transformation rates in the mesic microclimate. The differing responses in N cycling rates of the two microclimate to the increased IR is most certainly the result of differences in initial soil moisture conditions and vegetation type and cover.
机译:在亚高山草甸/鼠尾草灌木丛过渡带中,在气候变暖的处理下,在两个土壤小气候(干旱和中陆)中,在四年的时间内检查了原位氮(N)的转化和氮的有效性。在科罗拉多州克雷斯特德比尤特附近的落基山生物实验室,横跨两个土壤小气候的试验区暴露于原位红外(IR)气候变化操纵下。尽管在没有加热的情况下,两个小气候的氮转化率没有显着差异,但它们对增加的红外的响应却有显着差异。在以鼠尾草为主的干性微气候中模拟升温的情况下,在研究的前两年中,总氮矿化率翻了一番,固定化率提高了60%,但到第四年下降到预扰动率。总矿化率的这种时间模式与SOM的下降相关。同时,在第一年之后,加热区的净矿化率比对照高60%。在干燥的土壤中,总硝化速率与净硝化速率没有差异。与干性微气候相反,加热对中性微气候中的任何N转化速率均无明显影响。两种微气候在N循环速率上对IR的增加的响应不同,这肯定是由于初始土壤湿度条件,植被类型和覆盖率不同而引起的。

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