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Effects of inorganic nitrogen and litters of Masson Pine on soil organic carbon decomposition

机译:无机氮和马尾松凋落物对土壤有机碳分解的影响

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摘要

Soil organic matter (SOM) mineralization represents one of the largest fluxes in the global carbon cycle. Numerous studies have shown that soil organic carbon decomposition was largely changed owing to the addition of litter, however very few studies have focused on the role of plant organs in the priming effects (PEs). Here, we studied the effects of different Pinus massoniana organs (fresh leaf, leaf litter, twigs, absorptive fine roots, and transport fine roots) on C4 soil respiration by applying the 13C isotopic natural abundance method. Results showed that the effects of plant organs on PEs were significantly different at the end of 210 days incubation, which can be ascribed to contrasting organs traits especially non-structural carbohydrates and water-soluble compounds. Transport fine roots and fresh leaf induced positive PE, whereas absorptive fine roots induced negative PE. Leaf litter did not change the native SOC decomposition. Plant organ addition can change the microbial community and result in the reduction of bacteria-to-fungi ratio. Our results suggest that with regard to determining the PE of the entire ecosystem, using fresh leaf to represent leaf litter and aboveground to represent underground is implausible.
机译:土壤有机质(SOM)矿化是全球碳循环中最大的通量之一。大量研究表明,由于添加了垫料,土壤有机碳分解发生了很大变化,但是很少有研究关注植物器官在引发效应(PEs)中的作用。在这里,我们使用 13 C同位素自然丰度方法研究了马尾松不同器官(鲜叶,枯枝落叶,嫩枝,吸收性细根和运输性细根)对C4土壤呼吸的影响。结果表明,在孵育210天后,植物器官对PE的影响存在显着差异,这可以归因于器官特征的对比,尤其是非结构性碳水化合物和水溶性化合物。运输细根和新鲜叶片诱导PE阳性,而吸收细根诱导PE阴性。凋落物没有改变原生SOC的分解。添加植物器官可以改变微生物群落,并导致细菌与真菌的比率降低。我们的结果表明,在确定整个生态系统的PE方面,用新鲜的叶子代表枯枝落叶和用地上的代表地下土壤是不切实际的。

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