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Aggravated phosphorus limitation on biomass production under increasing nitrogen loading: a meta-analysis

机译:aggravated phosphorus limitation on biomass production under increasing nitrogen loading: a meta-analysis

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摘要

Nitrogen (N) and phosphorus (P), either individually or in combination, have been demonstrated to limit biomass production in terrestrial ecosystems. Field studies have been extensively synthesized to assess global patterns of N impacts on terrestrial ecosystem processes. However, to our knowledge, no synthesis has been done so far to reveal global patterns of P impacts on terrestrial ecosystems, especially under different nitrogen (N) levels. Here, we conducted a meta-analysis of impacts of P addition, either alone or with N addition, on aboveground (AGB) and belowground biomass production (BGB), plant and soil P concentrations, and N:P ratio in terrestrial ecosystems. Overall, our meta-analysis quantitatively confirmed existing notions: (i) colimitation of N and P on biomass production and (ii)more P limitation in tropical forest than other ecosystems. More importantly, our analysis revealed new findings: (i) P limitation on biomass production was aggravated by N enrichment and (ii) plant P concentration was a better indicator of P limitation than soil P availability. Specifically, P addition increased AGB and BGB by 34% and 13%, respectively. The effect size of P addition on biomass production was larger in tropical forest than grassland, wetland, and tundra and varied with P fertilizer forms, P addition rates, or experimental durations. The P-induced increase in biomass production and plant P concentration was larger under elevated than ambient N. Our findings suggest that the global limitation of P on biomass production will become severer under increasing N fertilizer and deposition in the future.
机译:氮(N)和磷(P)已被单独或组合使用,限制了陆地生态系统中生物量的产生。已经广泛地综合了实地研究,以评估氮对陆地生态系统过程的全球影响模式。然而,据我们所知,到目前为止,尚未进行任何综合研究来揭示全球磷对陆地生态系统的影响模式,特别是在不同氮(N)水平下。在这里,我们对单独添加或添加N的磷对地上(AGB)和地下生物量生产(BGB),植物和土壤中P浓度以及陆地生态系统中N:P比率的影响进行了荟萃分析。总体而言,我们的荟萃分析定量地证实了现有的观念:(i)N和P在生物量生产上的共同限制,以及(ii)热带森林中的P限制高于其他生态系统。更重要的是,我们的分析揭示了新的发现:(i)氮的富集加剧了生物量生产中磷的限制,(ii)植物磷的浓度比土壤磷的有效性更好地指示了磷的限制。具体而言,磷的添加分别使AGB和BGB分别提高了34%和13%。在热带森林中,磷的添加对生物量生产的影响大小要比草地,湿地和冻土带大,并且随磷的肥料形式,磷的添加速率或实验持续时间而变化。在高于环境氮的条件下,磷引起的生物量产量和植物磷浓度的增加幅度更大。我们的研究结果表明,在未来氮肥和沉积物增加的情况下,磷对生物量产量的全球限制将更加严重。

著录项

  • 作者

    Li Y.; Niu, S. L.; Yu, G. R.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 英语
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