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The location of Na~+ influx into rice roots and Na~+ transport from root to shoot

机译:Na〜+流入稻根的位置和Na〜+从根到射击的运输

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Through ~(22)Na~+ trace trials and multi-compartment transport box experiments, Na~+ influx into different root zones and transport to the shoot were studied. The Na~+ influx rate of branched roots was higher than that of un-branched roots, especiallyin external solution with higher Na~+ concentration solutions. The rate of uptake in younger branched root was lower than in mature branched roots. The Na~+ taken up by mature branched roots was transported to the shoots more quickly than that from theother root zones. The further the uptake was from root apex, the faster the transport to the shoot. In the moderate external solutions (50mM), Na~+ influx rate, Na~+ transports rate to the shoot and Na~+ concentration in the shoots were not affected by the Ca~(2+). But in the external solution with higher Na~+ concentration solution (100 mM), Na~+ transport to the shoot was inhibited 10%, and Na~+ influx rate was inhibited nearly 50%. The mature lateral root zone was the most important in Na~+ influx and transportation because it has larger epidermal area and excellent vascular bundle.
机译:通过〜(22)Na〜+痕量试验和多隔室运输箱实验,研究了Na〜+流入不同根区域和运输到拍摄。支链根的Na〜+流入速率高于未支链根,尤其是Na〜+浓度溶液的外溶液。较年轻的分支根部的摄取率低于成熟的支链根。由成熟支链根造成的Na〜+比来自其他根部区域更快地运输到枝条。进一步的摄取来自根顶点,运输到射击越快。在中等外部溶液(50mm)中,Na〜+流入速率,Na〜+转运速率与芽中的芽和Na〜+浓度不受Ca〜(2+)的影响。但在具有较高Na〜+浓度溶液(100mm)的外溶液中,抑制芽的Na〜+运输抑制了10%,并且Na +流入速率抑制了近50%。成熟的侧面根区是Na〜+流入和运输中最重要的,因为它具有较大的表皮区域和优异的血管束。

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