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Comparison of the response of red oak (Quercus rubra) seedlings and mature trees to ozone exposure using simulation modeling

机译:使用仿真建模比较红橡树(Quercus rubra)幼苗和成熟树木对臭氧暴露的响应

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Field studies have determined that the photosynthetic rates of mature northern red oak (Quercus rubra L.) trees are sensitive to ozone exposure whereas those of seedlings are not. We used a model of tree physiology to determine the consequences of these differences in photosynthetic response to carbon allocation and tissue growth in seedlings and mature trees over a 2-year period. In the seedling simulations at twice ambient ozone, only the total non-structural carbohydrate (TNC) storage pool was affected. The effects in the simulated mature tree were much greater, with large decreases predicted for TNC, fine root, leaf, stem, branch, and coarse root tissues. The model produced many ozone-induced responses in the mature tree that were similar or consistent with observations made in a held study, but the simulations overestimated the effect of twice ambient ozone on root TNC and growth. The discrepancy between field and simulated results suggests that the field study trees exposed to elevated ozone levels may use carbon at a reduced rate, particularly through reduced respiration. (C) 1988 Elsevier Science Ltd. All rights reserved. References: 27
机译:田间研究确定,成熟的北方红橡树(Quercus rubra L.)的光合速率对臭氧暴露敏感,而幼苗的光合速率则不敏感。我们使用树木生理学模型来确定这些差异在2年内对幼苗和成熟树木的碳分配和组织生长的光合作用响应的后果。在两次环境臭氧的幼苗模拟中,只有总非结构性碳水化合物(TNC)储存池受到影响。模拟成熟树的影响要大得多,预计TNC、细根、叶、茎、枝和粗根组织的影响会大幅下降。该模型在成熟树木中产生了许多臭氧诱导的响应,这些响应与在一项研究中的观察结果相似或一致,但模拟高估了两倍环境臭氧对根系TNC和生长的影响。野外和模拟结果之间的差异表明,暴露于高臭氧水平的野外研究树木可能以较低的速度使用碳,特别是通过减少呼吸作用。(C) 1988 Elsevier Science Ltd.保留所有权利。[参考资料: 27]

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