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首页> 外文期刊>Oecologia >Foliar delta 15N is affected by foliar nitrogen uptake, soil nitrogen, and mycorrhizae along a nitrogen deposition gradient.
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Foliar delta 15N is affected by foliar nitrogen uptake, soil nitrogen, and mycorrhizae along a nitrogen deposition gradient.

机译:叶面氮素 15 N受氮素沉积梯度的影响而吸收叶面氮,土壤氮和菌根。

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摘要

Foliar nitrogen isotope ( delta 15N) composition patterns have been linked to soil N, mycorrhizal fractionation, and within-plant fractionations. However, few studies have examined the potential importance of the direct foliar uptake of gaseous reactive N on foliar delta 15N. Using an experimental set-up in which the rate of mycorrhizal infection was reduced using a fungicide, we examined the influence of mycorrhizae on foliar delta 15N in potted red maple (Acer rubrum) seedlings along a regional N deposition gradient in New York State. Mycorrhizal associations altered foliar delta 15N values in red maple seedlings from 0.06 to 0.74 per mil across sites. At the same sites, we explored the predictive roles of direct foliar N uptake, soil delta 15N, and mycorrhizae on foliar delta 15N in adult stands of A. rubrum, American beech (Fagus grandifolia), black birch (Betula lenta), and red oak (Quercus rubra). Multiple regression analysis indicated that ambient atmospheric nitrogen dioxide (NO2) concentration explained 0, 69, 23, and 45% of the variation in foliar delta 15N in American beech, red maple, red oak, and black birch, respectively, after accounting for the influence of soil delta 15N. There was no correlation between foliar delta 13C and foliar %N with increasing atmospheric NO2 concentration in most species. Our findings suggest that total canopy uptake, and likely direct foliar N uptake, of pollution-derived atmospheric N deposition may significantly impact foliar delta 15N in several dominant species occurring in temperate forest ecosystems.
机译:叶面氮同位素(δ 15 N)的组成模式与土壤氮,菌根分级和植物内分级有关。但是,很少有研究探讨气态反应性氮直接叶面吸收对叶面δ 15 N的潜在重要性。通过使用杀菌剂降低菌根感染率的实验装置,我们研究了菌根对盆栽红枫(Acer rubrum)沿区域N的叶片三角洲 15 N的影响纽约州的沉积梯度。菌根协会将红枫树幼苗的叶片δ 15 N值从每英亩0.06更改为0.74 / mil。在同一地点,我们探讨了直接摄取叶面氮,土壤三角洲 15 N和菌根对红毛成虫林分中叶片三角洲 15 N的预测作用。美国山毛榉(Fagus grandifolia),黑桦木(Betula lenta)和赤栎(Quercus rubra)。多元回归分析表明,美国山毛榉的大气中二氧化氮(NO 2 )浓度解释了叶三角洲 15 N变化的0、69、23和45%,分别考虑了土壤三角洲 15 N的影响后,红枫,红橡树和黑桦树。在大多数物种中,叶面δ 13 C和叶面%N与大气NO 2 浓度的增加之间没有相关性。我们的研究结果表明,由大气污染引起的大气氮沉降的总冠层吸收以及可能直接吸收的叶面氮可能会对温带森林生态系统中几种优势物种的叶面三角洲 15 N产生重大影响。

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