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Ca2+ transport in plant cells and mechanisms of transformation of phytochrome-induced photosignals

机译:Ca2 +在植物细胞中的运输及其转化植物色素诱导的光ignals的机制

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Abstract: The recent data on the influence of phytochrome on the efficiency of Ca$+2$PLU$/ translocation across the membranes of oat protoplasts are given. Ca$+2$PLU$/ uptake in the protoplasts was shown to be influenced by the red light (R) illumination. This effect was reverted by the following far-red light (FR) illumination. To elucidate the sensitivity to phytochrome-controlling action the screening between the mechanisms of Ca$+2$PLU$/ transport across the plasma membranes of oat protoplasts, Na$+$PLU$//Ca$+2$PLU$/ and Ca$+2$PLU$//H$+$PLU$/ exchangers, Ca$+2$PLU$/-pump and Ca$+2$PLU$/-channel was done. It was established that phytochrome modulated the activity of Na$+$PLU$//Ca$+2$PLU$/-exchanger and Ca$+2$PLU$/-pump. The light-mediated oscillations of cytoplasmic Ca$+2$PLU$/ concentration in the oat protoplasts were demonstrated using fluorescence probe quin2 loaded into the cells and laser monitoring of fluorescence signal. The evidences were obtained that the oscillations were not the result of the elevation of cytoplasmic Ca$+2$PLU$/ concentration and had no connection with Ca$+2$PLU$/ pool of mitochondria. The possibility of the relation between the Ca$+2$PLU$/ oscillations and phosphoinositide metabolism in plant cell membranes is analyzed. The mechanisms of transformation of primary phytochrome signal into biological effects were discussed. !14
机译:摘要:给出了有关植物色素对燕麦原生质膜Ca $ + 2 $ PLU $ /转运效率的影响的最新数据。原生质体中的Ca + 2 $ PLU $ /吸收受红光(R)照射的影响。下列远红外线(FR)照明可恢复这种效果。为了阐明对植物色素控制作用的敏感性,在Ca $ + 2 $ PLU $ /穿过燕麦原生质体质膜,Na $ + $ PLU $ // Ca $ + 2 $ PLU $ /和Ca的机制之间进行筛选完成了$ + 2 $ PLU $ // H $ + $ PLU $ /交换器,Ca $ + 2 $ PLU $ /泵和Ca $ + 2 $ PLU $ /通道的操作。已经确定,植物色素调节Na $ + $ PLU $ // Ca $ + 2 $ PLU $ /-交换剂和Ca $ + 2 $ PLU $ /泵的活性。使用装入细胞的荧光探针quin2和激光监测荧光信号,证明了燕麦原生质体中细胞质Ca $ + 2 $ PLU $ /浓度的光介导振荡。获得的证据表明,振荡不是细胞质Ca $ + 2 $ PLU $ /浓度升高的结果,并且与线粒体Ca $ + 2 $ PLU $ /池没有关系。分析了Ca + 2 $ PLU $ /振荡与植物细胞膜中磷酸肌醇代谢之间关系的可能性。讨论了将原始植物色素信号转化为生物学效应的机制。 !14

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