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首页> 外文期刊>Oecologia >Variation in nitrogen-15 natural abundance and nitrogen uptake traits among co-occurring alpine species: do species partition by nitrogen form?
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Variation in nitrogen-15 natural abundance and nitrogen uptake traits among co-occurring alpine species: do species partition by nitrogen form?

机译:同时出现的高山物种中氮15的自然丰度和氮吸收特征的变化:物种是否按氮形式分配?

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摘要

In the N-limited alpine tundra, plants may utilize a diversity of N sources (organic and inorganic N) in order to meet their nutritional requirements. To characterize species-level differences in traits related to N acquisition, we analyzed foliar δ15N, nitrate reductase activity (NRA) and mycorrhizal infection in co-occurring alpine species during the first half of the growing season and compared these traits to patterns of N uptake using a 15N (15N-NH4 +, 15N-NO3 –) or 13C,15N ([1]-13C-15N-glycine) tracer addition in the greenhouse. 13C enrichment in belowground tissue indicated that all species were capable of taking up labeled glycine, although only one species showed uptake of glycine potentially exceeding that of inorganic N. Species showing the most depleted foliar δ15N and elevated NRA in the field also tended to show relatively high rates of NO3 – uptake in the greenhouse. Likewise, species showing the most enriched foliar δ15N also showed high rates of NH4 + uptake. The ratio of NO3 –:NH4 + uptake rates and growth rate explained 64% and 72% of the variance in foliar δ15N, respectively, suggesting that species differ in the ability to take up NO3 – and NH4 + in the field and that such differences may enable species to partition soil N on the basis of N form.
机译:在氮有限的寒带苔原中,植物可以利用多种氮源(有机和无机氮)以满足其营养需求。为了表征与氮获取相关的性状的物种水平差异,我们分析了生长期上半年共生高山物种的叶片δ15 N,硝酸还原酶活性(NRA)和菌根感染,并比较了这些性状。使用15 N(15 N-NH4 + ,15 N-NO3 )的氮吸收模式或在温室中添加13 C,15 N([1] -13 C-15 N-甘氨酸)示踪剂。地下组织中13 C的富集表明,所有物种都能够吸收标记的甘氨酸,尽管只有一种物种显示出的甘氨酸吸收量可能超过了无机N的吸收。叶片中的δ15 N和田间NRA升高也倾向于表现出较高的温室中NO3 吸收率。同样,显示出最丰富的叶面δ15 N的物种也显示出较高的NH4 + 吸收率。 NO3 :NH4 + 的吸收率和生长率分别解释了叶面δ15 N变化的64%和72%,表明物种在田间吸收NO3 和NH4 + 的能力不同,并且这种差异可能使物种能够根据N形态分配土壤N 。

著录项

  • 来源
    《Oecologia》 |2002年第4期|609-616|共8页
  • 作者单位

    Mountain Research Station Institute of Arctic and Alpine Research and Department of Environmental Population and Organismic Biology University of Colorado Boulder Colorado 80309-0334 USA;

    Mountain Research Station Institute of Arctic and Alpine Research and Department of Environmental Population and Organismic Biology University of Colorado Boulder Colorado 80309-0334 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Alpine tundra Ammonium Nitrate Organic nitrogen Soil nitrogen-15 natural abundance;

    机译:高山苔原硝酸铵有机氮土壤氮15自然丰度;

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