首页> 外文期刊>Applied and environmental soil science >Temporal Variation of N Isotopic Composition of Decomposing Legume Roots and Its Implications to N Cycling Estimates inN15Tracer Studies in Agroforestry Systems
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Temporal Variation of N Isotopic Composition of Decomposing Legume Roots and Its Implications to N Cycling Estimates inN15Tracer Studies in Agroforestry Systems

机译:农用林业系统N15示踪剂研究中豆科植物根分解的N同位素组成的时空变化及其对N循环估计的影响

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Below-ground residue of agroforestry trees is an important N source for associated crops. Several studies have shown that its isotopic signature (δ15N) may change after tree pruning, which makes it difficult to study below-ground N inputs from pruned trees by isotopic techniques. We studied how temporal variation of legume root residueδ15N could be explained by considering differential decomposition kinetics and15N content of residue fractions. A mathematical model on the isotopic patterns of soil and a N recipient plant during root decomposition was developed and applied for testing assumptions about residue characteristics against two experimental datasets. Observed15N patterns of the recipient plants could be satisfactorily simulated only when the residue was assumed to consist of at least two fractions with distinctδ15N and decomposition rates depending on their C : N ratio. Assumingδ15N of residue constant over time resulted in substantial underestimates of N derived from low-quality residue (%Ndfr) by the recipient plant when compared with experimental data. Results of this study suggest that residue fractionation can help improve estimation of %Ndfr in isotopic studies, as an alternative or complementary method to assuming or aiming at homogenous isotopic composition of N sources.
机译:农林业树木地下残留物是相关农作物的重要氮源。多项研究表明,其修剪后的同位素特征(δ15N)可能会发生变化,这使得很难通过同位素技术研究修剪后树木的地下氮输入。我们研究了如何通过考虑微分分解动力学和残留分数的15N含量来解释豆科植物根残留δ15N的时间变化。建立了根分解过程中土壤和氮受体植物同位素模式的数学模型,并将其用于针对两个实验数据集测试有关残留特征的假设。仅当假定残留物由至少两个具有不同δ15N和取决于其C:N比的分解速率的馏分组成时,才能令人满意地模拟观察到的受体植物的15N模式。与实验数据相比,假设残留量随时间变化的δ15N导致受体植物从低质量残留物(%Ndfr)衍生出的氮被大大低估了。这项研究的结果表明,作为假设或针对N源同质同位素组成的替代或补充方法,残渣分级分离有助于改善同位素研究中%Ndfr的估计。

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