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首页> 外文期刊>Ecosystems >Role of N2-fixation in Constructed Old-field Communities Under Different Regimes of [CO2], Temperature, and Water Availability
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Role of N2-fixation in Constructed Old-field Communities Under Different Regimes of [CO2], Temperature, and Water Availability

机译:在[CO2 ],温度和水利用率不同制度下,N2 固着在人工建设的旧田社区中的作用

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摘要

Nitrogen fixation was measured in constructed old-field ecosystems that were exposed for 3 years to different combinations of elevated atmospheric [CO2] and temperature (300 ppm and 3°C above ambient, respectively), and ambient or reduced soil moisture (corresponding to 25 or 2 mm rainfall per week). The old-fields included seven planted herbaceous annual and perennial species, including two legumes (Trifolium pratense and Lespedeza cuneata). Potential asymbiotic N2-fixation by soils, measured in laboratory incubations, was significantly less under the “dry” treatment but was estimated to contribute little overall to annual ecosystem N budgets. Foliar N concentrations declined significantly under elevated [CO2]. Effects of the three environmental factors on the mean (±SE) fraction of legume N derived from atmospheric N2 (FN dfa) varied from year-to-year, and FN dfa ranged from 0.64 ± 0.05 to 0.94 ± 0.03 depending on species and growing season. High rates of symbiotic N2-fixation (4.6–12 g N m?2 y?1) that annually contributed from 44% to 51% to the aboveground N stock in the old-field community was an important process driving changes in species composition over the 3-year experiment. Lespedeza biomass increased over time at the expense of several other species, including the other N-fixer, Trifolium. The dominance of Lespedeza in our ecosystem was due to high symbiotic N2-fixation rates, as well as shading effects on other species. The high symbiotic N2-fixation rates were largely independent of manipulations of [CO2], temperature, and water. The relatively high percentage of the aboveground N stock in this ecosystem contributed by symbiotic N2-fixation suggests that non-legume species may have benefited indirectly via reduced community demands on soil N supplies. Species-specific traits were important in the constructed ecosystems, indicating that multi-species studies are required for understanding complex interactions among environmental factors and dynamic changes in community composition.
机译:在暴露于大气[CO2 ]和温度(分别比环境温度高300 ppm和3°C),以及环境湿度或土壤湿度降低的不同组合下三年的人造旧田地生态系统中,对固氮进行了测量(相当于每周25到2毫米的降雨量)。旧田包括七个种植的一年生和多年生草本植物,其中包括两个豆科植物(Trifolium pratense和Lespedeza cuneata)。在实验室培养条件下测得的土壤潜在的非共生态N2 固着作用在“干法”处理下显着减少,但估计对年度生态系统氮预算的贡献很小。在升高的[CO2 ]下,叶面氮浓度显着下降。三种环境因素对大气中N2 (FN dfa )衍生的豆类N平均值(±SE)的影响逐年变化,而FN dfa 0.64±0.05至0.94±0.03,取决于物种和生长季节。较高的共生N2 固定率(4.6–12 g N m?2 y?1 )每年对旧土壤中地上N的贡献为44%至51%。在三年的实验中,野外群落是推动物种组成变化的重要过程。 Lespedeza的生物量随着时间的推移而增加,但以其他几个物种为代价,包括另一个N-固色剂Trifolium。 Lespedeza在我们生态系统中的主导地位是由于高共生N2 固定率以及对其他物种的遮蔽作用。 N2 的高共生固定率很大程度上与[CO2 ],温度和水的操作无关。 N2 共生作用在该生态系统中相对较高的地上N储量百分比表明,非豆类物种可能通过减少社区对土壤N供应的需求而间接受益。在构建的生态系统中,特定于物种的特征很重要,这表明需要进行多物种研究才能理解环境因素之间的复杂相互作用以及社区组成的动态变化。

著录项

  • 来源
    《Ecosystems 》 |2008年第1期| 125-137| 共13页
  • 作者单位

    Environmental Sciences Division Oak Ridge National Laboratory Mail Stop 6038 P. O. Box 2008 Oak Ridge TN 37831-6038 USA;

    Environmental Sciences Division Oak Ridge National Laboratory Mail Stop 6038 P. O. Box 2008 Oak Ridge TN 37831-6038 USA;

    Environmental Sciences Division Oak Ridge National Laboratory Mail Stop 6038 P. O. Box 2008 Oak Ridge TN 37831-6038 USA;

    Environmental Sciences Division Oak Ridge National Laboratory Mail Stop 6038 P. O. Box 2008 Oak Ridge TN 37831-6038 USA;

    Department of Ecology and Evolutionary Biology University of Tennessee Knoxville Tennessee 37996 USA;

    Department of Ecology and Evolutionary Biology University of Tennessee Knoxville Tennessee 37996 USA;

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

    Lespedeza; legumes; 15N natural abundance method; multi-factor experiments; climate change; constructed ecosystems;

    机译:豆科植物;豆类;15N自然丰度法;多因素实验;气候变化;生态系统构建;

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