首页> 美国卫生研究院文献>Plant Physiology >Stimulation of Symbiotic N2 Fixation in Trifolium repens L. under Elevated Atmospheric pCO2 in a Grassland Ecosystem.
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Stimulation of Symbiotic N2 Fixation in Trifolium repens L. under Elevated Atmospheric pCO2 in a Grassland Ecosystem.

机译:在草地生态系统中在大气pCO2升高的条件下刺激白三叶中的共生氮固定。

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摘要

Symbiotic N2 fixation is one of the main processes that introduces N into terrestrial ecosystems. As such, it may be crucial for the sequestration of the extra C available in a world of continuously increasing atmospheric CO2 partial pressure (pCO2). The effect of elevated pCO2 (60 Pa) on symbiotic N2 fixation (15N-isotope dilution method) was investigated using Free-Air-CO2-Enrichment technology over a period of 3 years. Trifolium repens was cultivated either alone or together with Lolium perenne (a nonfixing reference crop) in mixed swards. Two different N fertilization levels and defoliation frequencies were applied. The total N yield increased consistently and the percentage of plant N derived from symbiotic N2 fixation increased significantly in T. repens under elevated pCO2. All additionally assimilated N was derived from symbiotic N2 fixation, not from the soil. In the mixtures exposed to elevated pCO2, an increased amount of symbiotically fixed N (+7.8, 8.2, and 6.2 g m-2 a-1 in 1993, 1994, and 1995, respectively) was introduced into the system. Increased N2 fixation is a competitive advantage for T. repens in mixed swards with pasture grasses and may be a crucial factor in maintaining the C:N ratio in the ecosystem as a whole.
机译:共生固氮是将氮引入陆地生态系统的主要过程之一。因此,在大气CO2分压(pCO2)持续增加的世界中,隔离多余的C可能至关重要。使用Free-Air-CO2富集技术研究了长达3年的pCO2(60 Pa)升高对共生N2固定(15N同位素稀释法)的影响。白三叶单独或与黑麦草(非固定参考作物)一起在混合草地中培养。施用了两种不同的氮肥水平和脱叶频率。在pCO2升高的情况下,白三叶总氮的总氮产量持续增加,而来自共生氮固定的植物氮的百分比显着增加。所有其他同化的N均来自共生N2固定,而不是土壤。在暴露于较高pCO2的混合物中,共生固定氮的量增加(分别在1993、1994和1995年增加+7.8、8.2和6.2 g m-2 a-1)。 N2固定的增加是与牧草混用的T. repens的竞争优势,并且可能是维持整个生态系统中C:N比的关键因素。

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