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Effect of the Spartina alterniflora Root-Rhizome System on Salt Marsh Soil Denitrifying Bacteria

机译:互花米草根-根茎系统对盐沼土壤反硝化细菌的影响

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摘要

Nitrous oxide (N2O) reductase activity was used as an index of the denitrification potential in salt marsh soils. In a short Spartina alterniflora marsh, the seasonal distribution of N2O reductase activity indicated a causal relationship between S. alterniflora root-rhizome production and the denitrification potential of the soil system. The relationship was not discerned in samples from a tall S. alterniflora marsh. To further examine the in situ plant-denitrifier interaction in the short S. alterniflora marsh, plots with and without living S. alterniflora were established and analyzed for N2O reductase activity 5 and 18 months later. In the plots without living Spartina there was a significant reduction in the soil denitrification potential after 18 months, indicating that in the SS marsh the denitrifiers are tightly coupled to the seasonal production of below-ground Spartina macroorganic matter. In plots with intact Spartina, the soil denitrification potential was not altered by NH4NO3 or glucose enrichment. However, in plots without living Spartina, there were significant changes in soil N2O reductase activity, thus indicating that the plants can serve as a “buffer” against this form of pulse perturbation.
机译:一氧化二氮(N2O)还原酶活性用作盐沼土壤中反硝化潜力的指标。在短互花米草沼泽中,N2O还原酶活性的季节性分布表明互花米草根茎根茎的产生与土壤系统的反硝化潜力之间存在因果关系。在高互花米草沼泽的样本中没有发现这种关系。为了进一步检查短交链孢菌沼泽中原位植物-去硝化剂的相互作用,建立有无交链孢菌的地块,并在5和18个月后分析其N2O还原酶活性。在没有生活中的Spartina的地块中,经过18个月的土壤反硝化潜力显着降低,这表明在SS沼泽中,反硝化剂与地下Spartina大型有机物的季节性生产紧密相关。在完整的Spartina样地中,NH4NO3或葡萄糖富集不会改变土壤的反硝化潜能。然而,在没有活的斯巴达纳(Spartina)的地块中,土壤N2O还原酶活性发生了显着变化,因此表明该植物可以作为这种形式的脉冲扰动的“缓冲剂”。

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