APPLICATION OF THE NMR METHOD WITH PARAMAGNETIC DOPING TO ESTIMATION THE APOPLASTIC WATER TRANSFER IN THE ROOTS OF INTACT PLANTS UNDER IMPACT OF ABIOTIC STRESSES

M. Suslov
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Abstract

In this work, the methodological approach based on low-field NMR using the GdDTPA paramagnetic complex for the qualitative assessment of water transport along the apoplastic (extracellular) pathway in the roots of intact wheat plants is proposed. This approach consists in measuring the spin-spin relaxation times of the water magnetization in the roots during simultaneous incubation of the roots in a solution of the paramagnetic Gd-DTPA complex and the impact of a stress factor on the plants. During root incubation, this complex spreads only along the root apoplast system and shortens the apoplast water relaxation times. GdDTPA does not penetrate into the cells and, accordingly, does not change the intracellular water relaxation times. Thus, the rate of decrease in the relaxation times of the magnetization of apoplast water, which directly depends on the intensity of water transfer through the apoplast, can be used to determine the relative contribution of water transfer through the root apoplast during stress exposure. A twofold increase in the concentration of carbon dioxide in the aerial parts of plants was used as an abiotic factor presumably influencing the transfer of water along the root apoplast. Using this methodological approach, it was shown that increase in the CO2 concentration in the leaf zone of wheat plants to 800 ppm leads to decrease in the rate of water transfer through the root apoplast by 2–2.5 times compared with the control at ambient CO2 concentration of 400 ppm.
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应用顺磁核磁共振方法估算非生物胁迫下完整植物根系外体水分转移
在这项工作中,提出了基于低场核磁共振利用GdDTPA顺磁配合物定性评估水分在完整小麦植株根系沿胞外途径运输的方法。该方法包括测量根在顺磁性Gd-DTPA复合物溶液中同时孵育期间根中水磁化的自旋-自旋弛豫时间和胁迫因子对植物的影响。在根培养过程中,该复合体仅沿根外质体系统扩散,缩短了外质体水分松弛时间。GdDTPA不会渗透到细胞中,因此不会改变细胞内水弛豫时间。因此,外体水磁化弛豫时间的下降速率(直接取决于外体的水转移强度)可以用来确定应力暴露期间通过根外体的水转移的相对贡献。植物地上部分二氧化碳浓度的两倍增加被用作一个非生物因素,可能影响水沿根外质体的转移。利用该方法表明,当小麦叶片区CO2浓度增加到800 ppm时,通过根外质体的水分转移速率比环境CO2浓度为400 ppm的对照降低了2-2.5倍。
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