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Nitrogen isotopic composition of plants and soil in an arid mountainous terrain: south slope versus north slope

机译:干旱山地地形中植物与土壤的氮同位素组成:南坡与北坡

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Nitrogen cycling is tightly associated with environment. The south slope of a given mountain could significantly differ from north slope in environment. Thus, N cycling should also be different between the two slopes. Since leaf δ15N, soil δ15N and Δδ15Nleaf-soil (Δδ15Nleaf-soil?=??leaf δ15N ? soil δ15N) could reflect the N cycling characteristics, we put forward a hypothesis that leaf δ15N, soil δ15N and Δδ15Nleaf-soil should differ between the two slopes. However, such a comparative study between two slopes has never been conducted. In addition, environmental effects on leaf and soil δ15N derived from studies at global scale were often found to be different from those on a regional scale. This led to our argument that environmental effects on leaf and soil δ15N could depend on local environment. To confirm our hypothesis and argument, we measured leaf and soil δ15N on the south and north slopes of Tian Shan. Remarkable environmental differences between the two slopes provided an ideal opportunity for our test. The study showed that leaf δ15N, soil δ15N and δ15Nleaf-soil on the south slope were greater than those on the north slope, although the difference in soil δ15N was not significant. The result confirmed our hypothesis and suggested that the south slope has higher soil N transformation rates and soil N availability than the north slope. In addition, in this study it was observed that the significant influential factors of leaf δ15N were temperature, precipitation, leaf N, leaf C?∕?N, soil moisture and silt?∕?clay ratio on the north slope, whereas on the south slope only leaf C?∕?N was related to leaf δ15N. The significant influential factors of soil δ15N were temperature, precipitation, soil moisture and silt?∕?clay ratio on the north slope, whereas on the south slope, mean annual precipitation and soil moisture exerted significant effects. Precipitation exerted contrary effects on soil δ15N between the two slopes. Thus, this study supported our argument that the relationships between leaf and soil δ15N and environmental factors are localized.
机译:氮循环与环境紧密相关。给定山的南坡与环境中的北坡有显着不同。因此,循环也应该在两个斜坡之间存在不同。由于叶片Δ15n,土壤δ15n和Δδ15nleaf - 土壤(Δδ15nleaf - 土壤?=Δ15n?土壤Δ15n)可以反映N循环特性,我们提出了叶δ15n,土壤δ15n和Δδ15nleaf - 土壤之间的假设两个斜坡。然而,从未进行过两次斜坡之间的这种比较研究。此外,常常发现源自全球规模研究的叶片和土壤δ15N的环境影响与区域规模不同。这导致了我们的论点,即对叶片和土壤δ15N的环境影响可能取决于当地环境。确认我们的假设和论证,我们在天山的南部和北坡上测量叶子和土壤δ15N。两个斜坡之间的显着环境差异为我们的测试提供了理想的机会。该研究表明,南坡上的叶片δ15N,土壤δ15N和δ15NLeaf - 土壤大于北坡的土壤,尽管土壤δ15N的差异并不显着。结果证实了我们的假设,并建议南坡的土壤N变化率较高,土壤N可用性比北坡。此外,在本研究中,观察到叶片δ15N的显着影响因素是温度,沉淀,叶N,叶C?/?n,土壤水分和淤泥素?北坡粘土比,而在南方斜坡上斜率仅叶C?/θ与叶δ15N有关。土壤δ15N的显着影响因素是温度,降水,土壤水分和淤泥?/?北坡粘土比,而在南坡上,平均年降水量和土壤水分施加显着效果。降水对两个斜坡之间的土壤δ15N施加相反的影响。因此,这项研究支持我们的论点,即叶子和土壤δ15N与环境因素之间的关系是本地化的。

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