首页> 外文期刊>Ecosystems >Natural N-15 abundance of plants and soil N in a temperate coniferous forest
【24h】

Natural N-15 abundance of plants and soil N in a temperate coniferous forest

机译:温带针叶林中天然N-15丰富的植物和土壤N

获取原文
获取原文并翻译 | 示例
           

摘要

Measurement of nitrogen isotopic composition (delta(15)N) of plants and soil nitrogen might allow the characteristics of N transformation in an ecosystem to be detected. We tested the measurement of delta(15)N for its ability to provide a picture of N dynamics at the ecosystem level by doing a simple comparison of delta(15)N between soil N pools and plants, and by using an existing model. delta(15)N of plants and soil N was measured together with foliar nitrate reductase activity (NRA) and the foliar NO3- pool at two sites with different nitrification rates in a temperature forest in Japan. delta(15)N of plants was similar to that of soil NO3- in the high-nitrification site. Because of high foliar NRA and the large foliar NO3- pool at this site, we concluded that plant delta(15) N indicated a great reliance of plants on soil NO3- there. However, many delta(15)N of soil N overlapped each other at the other site, and delta(15)N could not provide definitive evidence of the N source. The existing model was verified by measured delta(15) N of soil inorganic N and it explained the variations of plant delta(15)N between the two sites in the context of relative importance of nitrification, but more information about isotopic fractionations during plant N uptake is required for quantitative discussions about the plant N source. The model applied here can provide a basis to compare delta(15) N signatures from different ecosystems and to understand N dynamics.
机译:通过测量植物和土壤中氮的同位素组成(delta(15)N),可以检测生态系统中氮的转化特征。我们通过对土壤N池和植物之间的del(15)N进行简单比较,并使用现有模型,测试了delta(15)N的测量能力以提供生态系统水平的N动态图。在日本一个温度森林中,在两个硝化速率不同的地点测量了植物和土壤氮的δ(15)N以及叶面硝酸还原酶活性(NRA)和叶面NO3-库。高硝化区植物的δ(15)N与土壤NO3-相似。由于该地区的叶面NRA较高且叶面NO3-池较大,因此我们得出结论:植物δ(15)N表示那里的植物对土壤NO3-的依赖性很大。但是,土壤N的许多delta(15)N在另一个站点上彼此重叠,并且delta(15)N不能提供有关N源的确定证据。现有模型已通过测量土壤无机N的delta(15)N进行了验证,它解释了在硝化作用相对重要的背景下两个站点之间植物delta(15)N的变化,但是有关植物N期间同位素分馏的更多信息关于植物氮源的定量讨论需要摄取。此处应用的模型可以为比较不同生态系统的del(15)N个签名和了解N个动态提供基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号