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Nitrogen and phosphorus addition differentially affect plant ecological stoichiometry in desert grassland

机译:氮和磷添加差异影响沙漠草原的植物生态化学计量

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Plant C:N:P stoichiometric relations drive powerful constraints on ecological interactions and processes. However, information about plant stoichiometric responses to N and P availability in desert grassland is limited. We conducted two field experiments with 7 levels of N (from 0.5?g to 24?g?N ? msup-2/sup yrsup-1/sup) and P (from 0.05?g to 3.2?g?P ? msup-2/sup yrsup-1/sup) additions in a desert grassland of Kunlun Mountain in the northwest of China to investigate the effects of these addition rates on the N and P stoichiometry of the dominant grass species Seriphidium korovinii. Nitrogen and P additions both affected plant stoichiometry. N addition suppressed P concentrations, whereas P addition had no effect on plant N concentrations. The N:P ratios of green aboveground biomass (AGB) were positively correlated with N addition ranging from 14.73 to 29.08, whereas those for P additions decreased ranging from 14.73 to 8.29. N concentrations were positively correlated with soil available N:P ratios, whereas, P concentrations were negatively correlated with soil availably N:P. Our results suggest that chemistry and stoichiometry of S. korovinii was directly affected by soil nutrient availability. Soil N availability affects S. korovinii stoichiometry to a greater extent that does soil P availability in this ecosystem. These findings suggest that N-deposition could affect the stoichiometry of this desert grassland ecosystem, and thereby potentially alter litter decomposition, plant community composition, nutrient cycling, and food-web dynamics of these desert ecosystems.
机译:植物C:N:P化学计量关系在生态互动和过程中推动强大的约束。然而,有关植物化学计量对D沙漠草原的N和P可用性的信息有限的信息。我们进行了两种田间实验,7级N水平(从0.5?g至24Ω·g?n = n = n =γyr -1/1 / sup> -1)(从0.05?g 3.2?g?p?p?m -2/r yr -1/1 / sup>)在中国西北部的昆仑山沙漠草原中添加,调查这些加法率的影响主要草地锡哌啶Korovinii的N和P化学计量。氮气和P添加受影响的植物化学计量。添加抑制抑制的P浓度,而P添加对植物N浓度没有影响。 N:N:Grought Biomass(AGB)的N比率与14.73至29.08的N添加范围呈正相关,而P增加的则呈呈呈正相关,而P增加的增加率降低至8.29。 n浓度与土壤可用呈正相关N:P比,而P浓度与土壤呈负相关,可用性地与N:p呈负相关。我们的研究结果表明,Korovinii的化学和化学计量直接受土壤养分可用性的影响。土壤n可用性影响科罗维尼地的化学计量在这种生态系统中的土壤P.这些研究结果表明,N沉积可能影响这种沙漠草原生态系统的化学计量,从而可能改变这些沙漠生态系统的凋落物分解,植物群落组成,营养循环和食品网动态。

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