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15N natural abundance of foliage and soil across boreal forests of Finland.

机译:芬兰北方森林的15N自然丰富的树叶和土壤。

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This study presents the latitudinal variation (from 60 degrees 30'N to 68 degrees 2'N latitude) of natural abundances of 15N in the foliage, humus and soils of boreal forests of Finland. Our results clearly showed that N concentration of the foliage did not change significantly with latitudes but their 15N values were significantly higher in higher latitude sites relative to that of the mid and lower latitude sites, indicating the different forms of N uptake at the higher latitudes compared to the lower latitudes. We assume that the higher foliage delta 15N values of the higher latitudes trees might be due to either more openness of N cycle (greater proportional N losses) in these latitudes compared to the sites of southern latitudes (lower N losses) or the differences in their mycorrhizal associations. Regression analysis showed that the temperature was the main factor influencing the 15N natural abundance of humus and soil of all forest ecosystems, both before and after clear-cut, whereas rainfall was the main controlling factor to the foliage 15N. Possible reasons behind the increasing delta 15N natural abundances of plants and soils with increasing latitudes are discussed in this paper. The clear-cut did not show any specific trend on the 15N fractionation in humus and soil, i.e. both 15N-enrichment and -depletion occurred after clear-cut..
机译:这项研究提出了芬兰北方森林的叶子,腐殖质和土壤中15 N的自然丰度在纬度上的变化(从60度30'N到68度2'N纬度)。我们的结果清楚地表明,随着纬度的变化,树叶的氮浓度没有显着变化,但相对于中,低纬度地区,高纬度地区其15N值显着较高,这表明与高纬度地区相比,氮的吸收形式不同到较低的纬度。我们假设较高纬度树的较高的叶绿素变化量15N值可能是由于与南部纬度的站点相比,这些纬度中的N循环更加开放(N比例损失较大)(N损失较低)或其差异菌根协会。回归分析表明,温度是影响所有森林生态系统腐殖质和土壤15N自然丰度的主要因素,无论是在砍伐前后,还是降雨都是影响叶子15N的主要控制因素。本文讨论了随着纬度增加,植物和土壤的δ15N自然丰度增加的可能原因。在腐殖质和土壤中15N的分馏没有明确的趋势,即在清除后15N的富集和消耗都发生了。

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