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首页> 外文期刊>The Science of the Total Environment >Effects of elevated CO_2 on plant C-N-P stoichiometry in terrestrial ecosystems: A meta-analysis
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Effects of elevated CO_2 on plant C-N-P stoichiometry in terrestrial ecosystems: A meta-analysis

机译:CO_2升高对陆生生态系统植物C-N-P化学计量的影响:Meta分析

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A substantial number of experiments have so far been carried out to study the response of the C-N-P stoichiometry of terrestrial plants to the rising CO2 level of the earth. However, there is a need of systematic evaluation for assessing the impact of the elevated CO2 on plant C-N-P stoichiometry. In the present investigation, a comprehensive meta-analysis involving 386 published reports and including 4481 observations has been carried out. The goal of the research was to determine the response of plants to their C-N-P stoichiometry due to elevated levels of global atmospheric CO2. The results showed that rising CO2 altered the concentration of C (+2.19%, P 0.05), N (-9.73%, P 0.001) and P (-3.23%, P 0.001) and C: N (+13.29%, P 0.001) and N: P ratios (-7.32%, P 0.0001). Overall, a slightly increasing trend in the C: P ratio (P 0.05) in the plant was observed. However, plant leaf, shoot and herbaceous type of plants showed more sensitivity to rising CO2. CO2 magnitude exhibited a positive effect (P 0.05) on C: N ratio. Additionally, " CO2 acclimation" hypothesis as proposed by the authors of the current paper was also tested in the study. Results obtained, especially, show changes of C and N concentrations and C: P ratio to an obvious down-regulation for long-term CO2 fumigation. At spatial scales, a reduction of plant N concentration was found to be higher in the southern hemisphere. The CO2 enrichment methods affected the plant C-N-P stoichiometry. Compared to FACE (free-air CO2 enrichment), OTC (open top chamber) showed larger changes of C, N, P, and N: P. The results of the present study should, therefore, become helpful to offer a better understanding towards the response of the terrestrial plant C-N-P stoichiometry to an elevated global atmospheric CO2 in the future. (C) 2018 Elsevier B.V. All rights reserved.
机译:迄今为止,已经进行了大量的实验来研究陆地植物的C-N-P化学计量对地球CO2浓度升高的响应。但是,需要系统评估来评估升高的CO2对植物C-N-P化学计量的影响。在本次调查中,已进行了一项综合的荟萃分析,涉及386份已发表的报告并包括4481份观察值。该研究的目的是确定由于全球大气CO2水平升高而导致的植物对其C-N-P化学计量的响应。结果表明,CO2浓度升高改变了C(+ 2.19%,P <0.05),N(-9.73%,P <0.001)和P(-3.23%,P <0.001)和C:N(+ 13.29%)的浓度。 ,P <0.001)和N:P比(-7.32%,P <0.0001)。总体而言,观察到植物中C:P比率略有增加(P> 0.05)。但是,植物的叶,茎和草本类型的植物对CO2上升显示出更高的敏感性。 CO2量对C:N比表现出正效应(P <0.05)。另外,在本研究中还检验了本文作者提出的“ CO2适应”假说。尤其是获得的结果表明,长期CO2熏蒸处理中的C和N浓度以及C:P比率发生了明显的下调。在空间尺度上,发现南半球的植物氮浓度降低更高。 CO2富集方法影响了植物C-N-P的化学计量。与FACE(自由空气中的CO2富集)相比,OTC(敞开式顶室)的C,N,P和N:P变化较大。因此,本研究的结果应有助于更好地理解未来陆生植物CNP化学计量对全球大气CO2升高的响应。 (C)2018 Elsevier B.V.保留所有权利。

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