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Ozone fumigation of Quercus ilex L. slows down leaf litter decomposition with no detectable change in leaf composition

机译:昆虫肝痘痘L.减缓叶凋落物分解,叶组合物没有可检测的变化

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摘要

Context - The evaluation of changes in litter decomposition rate due to increasing trend in tropospheric ozone is an emerging field of investigation, providing relevant information on long-term forest ecosystem sustainability.ududAims - This research aims to clarify the effects of ozone exposure on Quercus ilex leaf chemical composition and decomposition slow down.ududMethods - Young plants were fumigated in growth chambers at a cumulative dose of 17.15 ppm h. To assess the fumigation effectiveness, stomatal conductance and net photosynthesis were monitored. Leaves were analysed for C, N, S, Ca, Mg, K, Fe, Zn, Mn, total soluble sugars, starch, acid-detergent fibre (ADF), lignin and cellulose prior to the incubation in litter bags in mesocosms, and during decomposition along 395 days.ududResults - Ozone-exposed leaves showed a significant reduction in net photosynthesis and stomatal conductance but did not differ from control leaves in all the chemical parameters analysed. Nevertheless, leaf decomposition rate was lower in treated leaves. The main differences between the models describing the mass loss in exposed and control leaves were played by ADF for exposed leaves and by lignin for control leaves, as well as by N, that showed a greater contribution in the model for the exposed leaves.ududConclusion - Ozone fumigation of Q. ilex results in leaf litter decomposition slowing down, mainly due to ADF joint dynamics with the other variables describing mass decay, even if no detectable changes in initial leaf composition occur.
机译:背景信息 - 由于对流层臭氧的趋势增加,凋落物分解率变化的评估是一个新兴的调查领域,提供有关长期森林生态系统可持续性的相关信息。 ud u.iaims - 本研究旨在阐明臭氧暴露的影响在昆虫肝叶化学成分和分解缓慢下降。 ud udmethods - 幼苗在17.15ppm h的累积剂量下熏蒸在生长室中。为了评估熏蒸效率,监测气孔电导和净光合作用。在孵化在Mesocosms的垃圾袋中之前,分析了C,N,S,Ca,Mg,K,Fe,Zn,Mn,总可溶性糖,淀粉,酸洗涤剂纤维(ADF),木质素和纤维素,在沿395天的分解期间。 UD Udresults - 臭氧暴露的叶片显示出净光合作用和气孔导度的显着降低,但在分析的所有化学参数中没有与对照叶不同。然而,处理的叶片中叶分解率降低。描述暴露和控制叶中的质量损失的模型之间的主要差异由ADF用于暴露的叶片,并通过木质素进行控制叶,以及N,在曝光叶片的模型中表现出更大的贡献。 UD Udconclusion - 臭氧熏蒸Q.Ilex导致叶凋落物分解放缓,主要是由于ADF与描述质量衰减的其他变量的联合动态,即使初始叶组合物的未检测到的变化发生。

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