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首页> 外文期刊>Trees. Structure and Function >Demonstration of the root surface electrogenic ion pump activity revealed from the seasonal inversion in the phase relation between electro-radicogram and the diurnal oscillation of air temperature in a field tree (Diospyros kaki)
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Demonstration of the root surface electrogenic ion pump activity revealed from the seasonal inversion in the phase relation between electro-radicogram and the diurnal oscillation of air temperature in a field tree (Diospyros kaki)

机译:现场树中电辐射图与气温的昼夜振荡之间的相位关系的季节性反演揭示了根表面生电离子泵的活性(Diospyros kaki)

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摘要

Re-examination of the electro-radicogram (ERG) obtained during past 10 years research (Masaki and Okamoto in Trees (Berl) 21:433-442, 2007) enabled us to discriminate the excess activity of the electrogenic ion pump in the root surface cell membrane over that of the xylem pump during most of the foliate phase. The trans-root electric potential (TRP) is defined as the difference between V ps (electric potential difference between symplast and bulk water phase surrounding the root) and V px (electric potential difference between symplast and xylem apoplast). The diurnal oscillation of TRP followed that of the air temperature and/or light intensity with a delay of several hours during defoliate phase. This means the superiority of the electrogenic activity of the xylem pump over that of the root surface pump. However, after leaf expansion, TRP began to oscillate inversely with the temperature change with a short delay, indicating the superiority of the electrogenic activity of the surface ion pump over that of the xylem pump. An experimental lumbering of the surroundings of the kaki tree in foliate phase prominently increased the ERG amplitude, keeping the inverted phase relation, with the increase in transpiration caused by the increased illumination. An incidental sudden fall of the temperature and illumination caused an inverse reaction.
机译:对过去10年的研究(Masaki和Okamoto in Trees(Berl)21:433-442,2007年)中获得的电子放射线谱(ERG)的重新检查使我们能够辨别根源表面中电离子泵的过量活性。在大多数叶期中,细胞膜超过木质部泵的膜。跨根电位(TRP)定义为V ps(根周围的共生体与主体水相之间的电位差)和V px(共生体与木质部质外体之间的电位差)之间的差。在落叶期,TRP的昼夜振荡跟随空气温度和/或光强度的振荡,并延迟了几个小时。这意味着木质部泵的生电活性优于根表面泵。但是,叶片膨胀后,TRP开始随温度的变化而反向振荡,且延迟时间很短,这表明表面离子泵的生电活性优于木质部泵。叶酸阶段柿树周围环境的实验性伐木显着增加了ERG振幅,保持了反相关系,并且随着光照增加而蒸腾作用增加。温度和光照的偶然突然下降引起逆反应。

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