追踪
氮气
环境科学
转化(遗传学)
土壤水分
土壤科学
同位素稀释
稳定同位素比值
生物系统
计算机科学
化学
生物
质谱法
操作系统
物理
基因
量子力学
生物化学
有机化学
色谱法
作者
Tobias Rütting,Dries Huygens,Jeroen Staelens,Christoph Müller,Pascal Boeckx
摘要
To obtain an in-depth understanding of soil nitrogen dynamics, it is necessary to quantify a variety of simultaneously occurring gross nitrogen transformation processes. In order to do so, most studies apply 15N in a disturbed soil–microbial–root system and quantify gross rates based on the principles of 15N isotope dilution. However, this approach has several shortcomings. First, studying disturbed soil provides only limited information on in situ soil nitrogen dynamics. Secondly, the analytical data analysis allows the quantification of total production and consumption rates of the labelled pool, but does not provide information on process-specific transformation rates. Combining in situ15N isotope labelling over 1–2 weeks with numerical data analysis allows determining process-specific gross nitrogen transformations in undisturbed soils under field conditions in the presence of live roots and their associated microbial communities. This has the potential to increase our understanding of nitrogen dynamics in the soil environment.
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