首页> 外文期刊>Plant and Soil >Experimental setup of field lysimeters for studying effects of elevated ozone and below-ground pathogen infection on a plant-soil-system of juvenile beech (Fagus sylvatica L.)
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Experimental setup of field lysimeters for studying effects of elevated ozone and below-ground pathogen infection on a plant-soil-system of juvenile beech (Fagus sylvatica L.)

机译:用于研究升高的臭氧浓度和地下病原体感染对幼小山毛榉(Fagus sylvatica L.)植物-土壤系统的影响的现场溶渗仪的实验装置

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摘要

An experiment, focusing on the effects of chronically enhanced O regimes on young beech (Fagus sylvatica) and on the microbial rhizosphere community structure, was conducted from November 2002 to August 2006 in eight field lysimeters at the Helmholtz Zentrum Mconchen. The instrumentations of the lysimeters enabled the establishment of the water balance in the unsaturated zone and the assessment of the water uptake by plants. Further, the containment provided by the lysimeters made it possible to apply a root rot pathogen infection without contaminating the surrounding soil. A free-air fumigation system allowed to double the O concentration in the air above four lysimeters relative to the ambient air. To avoid damage of the leaves the maximum O concentration was limited to 150 nL Lp#. For nearly 70% of the time the set-point concentration was reached within 10%. In the final harvest the whole soil column was retrieved and a nearly complete data-set of above-ground and below-ground parameters became available.
机译:从2002年11月至2006年8月,在Helmholtz Zentrum Mconchen的8个田间蒸渗仪中进行了一项实验,重点研究了长期强化O制度对幼小山毛榉(Fagus sylvatica)和微生物根际群落结构的影响。溶渗仪的仪器可以在非饱和区建立水平衡并评估植物的吸水率。此外,由溶渗仪提供的封闭使得有可能在不污染周围土壤的情况下施加根腐病病原体感染。自由空气熏蒸系统允许相对于周围空气,在四个测厚仪上方的空气中O浓度增加一倍。为了避免损坏叶片,最大O浓度限制为150 nL Lp#。在将近70%的时间里,设定点浓度达到10%以内。在最后一次收获中,整个土壤柱都被取回,地面和地下参数的几乎完整数据集变得可用。

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