首页> 外文期刊>Water, Air and Soil Pollution: Focus. >Plant and Soil System Responses to Ozone After 3 Years in a Lysimeter Study with Juvenile Beech (Fagus sylvatica L.)
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Plant and Soil System Responses to Ozone After 3 Years in a Lysimeter Study with Juvenile Beech (Fagus sylvatica L.)

机译:幼木山毛榉Lysimeter研究中3年后植物和土壤系统对臭氧的反应

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A lysimeter study was performed to monitor effects of elevated ozone on juvenile trees of Fagus sylvatica L.as well as on the plant-soil system.During a fumigation period over almost three growing seasons,parameters related to plant growth,pheno-logical development and physiology as well as soil functions were studied.The data analyses identified elevated ozone to delay leaf phenology at early and to accelerate it at late developmental stages,to reduce growth,some leaf nutrients (Ca,K) as well as some soluble phenolics (hydroxycinnamic acid derivatives,total flavonol glycosides).No or very weak ozone effects were found in mobile carbon pools of leaves (starch,sucrose),and other phenolic compounds (flavans).Altered gene expression related to stress and carbon cycling corresponded well with findings from leaf phenology and chemical composition analyses indicating earlier senescence and oxidative stress in leaves under elevated ozone.Conversely in the soil system,no effects of ozone were detected on soil enzyme activities,rates of litter degradation and lysimeter water balances.Despite the fact that the three reported years 2003-2005 were climatically very contrasting including a hot and dry as well as an extremely wet summer,and also mild as well as cold winters,the influence of ozone on a number of plant parameters is remarkably consistent,further underlining the phytotoxic potential of elevated tropospheric ozone levels.
机译:进行了溶渗仪研究,以监测臭氧升高对青冈和植物土壤系统的影响。在近三个生长季节的熏蒸期中,与植物生长,物候发育和生长相关的参数数据分析确定了升高的臭氧水平,可以在早期延迟叶片物候并在发育后期加速其物候,从而减少生长,减少叶片养分(Ca,K)以及某些可溶性酚类物质(羟基肉桂酸)的含量。酸衍生物,总黄酮醇苷)。在叶片(淀粉,蔗糖)和其他酚类化合物(黄酮)的可移动碳库中未发现或只有非常弱的臭氧作用。与胁迫和碳循环相关的改变的基因表达与来自叶片物候和化学组成分析表明,臭氧升高时,叶片的衰老和氧化应激更早。相反,在土壤系统中,臭氧没有影响尽管2003-2005年的三个报告年份在气候上形成了鲜明的对比,包括炎热干燥,夏季非常潮湿,以及温和寒冷,但仍检测到土壤酶活性,凋落物降解率和溶氧计水分平衡。在冬季,臭氧对许多植物参数的影响非常一致,进一步突出了对流层臭氧水平升高的植物毒性潜力。

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