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首页> 外文期刊>Environmental and experimental botany >Internal conductance to CO2 transfer of adult Fagus sylvatica: variation between sun and shade leaves and due to free-air ozone fumigation.
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Internal conductance to CO2 transfer of adult Fagus sylvatica: variation between sun and shade leaves and due to free-air ozone fumigation.

机译:成年水青冈CO2转移的内部电导:日光与阴凉叶之间的变化以及自由空气臭氧熏蒸所致。

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Two separate objectives were considered in this study. We examined (1) internal conductance to CO2 (gi) and photosynthetic limitations in sun and shade leaves of 60-year-old Fagus sylvatica, and (2) whether free-air ozone fumigation affects gi and photosynthetic limitations. gi and photosynthetic limitations were estimated in situ from simultaneous measurements of gas exchange and chlorophyll fluorescence on attached sun and shade leaves of F. sylvatica. Trees were exposed to ambient air (1 x O3) and air with twice the ambient ozone concentration (2 x O3) in a free-air ozone canopy fumigation system in southern Germany (Kranzberg Forest). gi varied between 0.12 and 0.24 mol m-2 s-1 and decreased CO2 concentrations from intercellular spaces (Ci) to chloroplastic (Cc) by approximately 55 micro mol mol-1. The maximum rate of carboxylation (Vcmax) was 22-39% lower when calculated on a Ci basis compared with a Cc basis. gi was approximately twice as large in sun leaves compared to shade leaves. Relationships among net photosynthesis, stomatal conductance and gi were very similar in sun and shade leaves. This proportional scaling meant that neither Ci nor Cc varied between sun and shade leaves. Rates of net photosynthesis and stomatal conductance were about 25% lower in the 2 x O3 treatment compared with 1 x O3, while Vcmax was unaffected. There was no evidence that gi was affected by ozone..
机译:在这项研究中考虑了两个单独的目标。我们研究了(1)60岁的Fagus sylvatica的阳光和荫凉叶片对CO2(gi)的内部电导和光合限制,以及(2)自由空气臭氧熏蒸是否会影响gi和光合限制。通过同时测量西番莲的阳光和遮荫叶片上的气体交换和叶绿素荧光的同时测量来估计gi和光合限制。在德国南部(克兰茨堡森林)的自由空气臭氧冠层熏蒸系统中,树木暴露于环境空气(1 x O3)和具有两倍于环境臭氧浓度(2 x O3)的空气中。 gi在0.12和0.24 mol m-2 s-1之间变化,并且从细胞间空间(Ci)到叶绿体(Cc)的CO2浓度降低了约55 micro mol mol-1。当以Ci为基础计算时,与Cc相比,最大羧化率(Vcmax)降低了22-39%。与遮荫叶子相比,gi在太阳叶子上的大小大约是其两倍。在日光和阴凉叶下,净光合作用,气孔导度和gi之间的关系非常相似。这种成比例的缩放比例意味着,Ci和Cc在阳光和阴暗的叶子之间都没有变化。 2 x O3处理的净光合作用和气孔导度比1 x O3降低约25%,而Vcmax不受影响。没有证据表明gi受臭氧的影响。

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