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Effects of Elevated Ozone on Stoichiometry and Nutrient Pools of Phoebe Bournei (Hemsl.) Yang and Phoebe Zhennan S. Lee et F. N. Wei Seedlings in Subtropical China

机译:臭氧升高对亚热带菲比·伯恩(Phoebe Bournei(Hemsl。)Yang)和菲比(Phoebe Zhennan)S. Lee等F. N. Wei幼苗的化学计量和养分池的影响

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Tropospheric ozone (O 3 ) is considered one of the most critical air pollutants in many parts of the world due to its detrimental effects on plants growth. However, the stoichiometric response of tree species to elevated ozone (O 3 ) is poorly documented. In order to understand the effects of elevated ozone on the stoichiometry and nutrient pools of Phoebe bournei (Hemsl.) Yang ( P. bournei )and Phoebe zhennan S. Lee et F. N. Wei ( P. zhennan ), the present study examined the carbon (C), nitrogen (N), and phosphorous (P) concentrations, stoichiometric ratios, and stocks in foliar, stem, and root for P. bournei and P. zhennan with three ozone fumigation treatments (Ambient air, 100 ppb and 150 ppb). The results suggest that elevated ozone significantly increased the N concentrations in individual tissues for both of P. bournei and P. zhennan . On the contrary, elevated ozone decreased the C:N ratios in individual tissues for both of P. bournei and P. zhennan because the C concentration remained stable under the ozone stress. The P concentration, and C:P and N:P ratios in individual tissues for both P. bournei and P. zhennan did not exhibit consistent variation tendency with elevated ozone. Elevated ozone sharply reduced the total C, N, and P stocks and altered the pattern of C, N, and P allocation for both P. bournei and P. zhennan . The present study suggests that tropospheric ozone enrichment should be considered an important environmental factor on stoichiometry of tree species.
机译:对流层臭氧(O 3)由于对植物生长具有不利影响,因此被认为是世界上许多地区最关键的空气污染物之一。但是,很少有树种对升高的臭氧(O 3)的化学计量响应记录。为了了解臭氧浓度升高对楠木(Phoebe bournei(Hemsl。))和楠木(Phoebe zhennan)S. Lee等人(P. zhennan)的化学计量和养分池的影响,本研究对碳( C),使用三种臭氧熏蒸处理(环境空气,100 ppb和150 ppb)的本氏假单胞菌和真楠假单胞菌的氮,氮和磷的浓度,化学计量比和叶,茎和根中的储量。结果表明,升高的臭氧显着增加了伯氏疟原虫和珍南疟原虫各个组织中的N含量。相反,升高的臭氧降低了伯氏假单胞菌和珍南假单胞菌在单个组织中的C:N比,因为C浓度在臭氧胁迫下保持稳定。伯氏疟原虫和珍南疟原虫的单个组织中的磷浓度,C:P和N:P比值均未显示出随着臭氧浓度升高而出现的一致变化趋势。升高的臭氧急剧减少了碳,氮和磷的总量,并改变了伯氏对虾和珍南对虾的碳,氮和磷分配格局。本研究表明,对流层臭氧富集应被认为是树种化学计量的重要环境因素。

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