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Coupled soil-availability and tree-limitation nutritional shifts induced by N deposition: insights from N to P relationships in Abies pinsapo forests

机译:氮沉降引起的土壤利用率与树木限制性营养耦合:从冷杉冷杉林中氮到磷的关系

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Interacting effects of atmospheric N deposition on the degree to which tree demand for other nutrients is met by soil supply has seldom been explored in Mediterranean-type ecosystems. We hypothesized that patterns for the relative availability of N and P in soils will be matched by variations in process rates related to soil organic P cycling and by shifts from N to P limitation of tree growth. We examined N/P relationships in Mediterranean-fir (Abies pinsapo) forests from two nearby regions differing in N deposition levels. N pools and transformation rates and the contribution of organic fractions to the labile P pool in soils showed increasing trends toward the pollution source. Phosphomonoesterase activity (PME) in bulk soils, root PME per unit biomass (but not per unit soil volume) and biomass accumulation in P-fertilized root-in-growth cores incubated in situ were also the highest at the sites receiving elevated N deposition, indicating P limitation. In contrast, forest stands in the region farther from the pollutant source were N-limited (preferential root growth in N-rich soil microsites) and showed lower PME activities and higher total fine root biomass. In the forests under elevated N deposition, higher values for an overall indicator of soil N status matched with indications of an accelerated soil organic P subcycle and P-limitation of tree growth.
机译:在地中海型生态系统中,很少研究大气氮沉降对树木通过土壤供应满足其他养分需求的程度的相互作用。我们假设土壤中氮和磷的相对有效性模式将通过与土壤有机磷循环相关的过程速率变化以及树木生长从氮到磷的限制而匹配。我们研究了来自附近两个地区氮沉积水平不同的地中海冷杉(Abies pinapo)森林中的氮磷关系。土壤中的氮库和转化率以及有机组分对不稳定的磷库的贡献显示出向污染源增加的趋势。散装土壤中的磷酸单酯酶活性(PME),每单位生物量的根部PME(但不是每单位土壤体积)和原位培养的P施肥的生根核心中生物量的积累在氮沉降增加的部位也最高,表示P限制。相反,远离污染物源的区域的林分受到氮限制(富含氮的土壤微地点优先生长根),并表现出较低的PME活性和较高的总细根生物量。在氮沉降较高的森林中,较高的土壤氮素状况总体指标与加速的土壤有机磷亚循环和树木生长的磷限制指标相吻合。

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