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The effects of oxygen solubility and high concentrations of salts on photosynthetic electron transport in chloroplast membranes.

机译:氧溶解度和高浓度盐对叶绿体膜中光合作用电子传递的影响。

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摘要

Chloroplast membranes were isolated in different media containing Hepes [4-(2-hydroxyethyl)-1-piperazine-ethanesulphonic acid] and high concentrations of sorbitol (0.33 M), potassium citrate (0.75 M) or Na2SO4 (1.0 M). Due to the complexity of the media, the oxygen solubility is strongly modified by high concentrations of salts (oxygen solubility for 0.33 M-sorbitol, 0.21 mmol/litre; for 0.75 M-potassium citrate, 0.121 mmol/litre; and for 1.0 M-Na2SO4, 0.112 mmol/litre). The knowledge of these values is necessary to interpret the rate of O2 evolution. For thylakoids isolated in 'sorbitol buffer' and then tested in high concentrations of potassium citrate, a slight stimulation of O2 evolution is observed (143-173 mumol of O2/h per mg of chlorophyll a) with potassium ferricyanide as electron acceptor. When we monitor the potassium ferricyanide reduction, no stimulation of electron transport is obtained even if the observed phenomenon is identical with the Photosystem-II oxygen evolution. In the same experiments no stimulation of the photophosphorylation was recorded, but when thylakoids are directly isolated in 0.75 M-potassium citrate, O2 evolution, ferricyanide reduction and photophosphorylation are inhibited by high concentrations of salts. The behaviour of thylakoids seems to be influenced by their initial treatment.
机译:在含有Hepes [4-(2-羟乙基)-1-哌嗪-乙磺酸]和高浓度的山梨糖醇(0.33 M),柠檬酸钾(0.75 M)或Na2SO4(1.0 M)的不同培养基中分离叶绿体膜。由于介质的复杂性,氧的溶解度会被高浓度的盐强烈地改变(对于0.33 M-山梨糖醇,0.21 mmol / L;对于0.75 M柠檬酸钾,0.121 mmol / L;以及1.0 M- Na2SO4,0.112 mmol / L)。这些值的知识对于解释O2的释放速率是必要的。对于在“山梨糖醇缓冲液”中分离并在高浓度柠檬酸钾中测试的类囊体,用铁氰化钾作为电子受体可观察到对O2的轻微刺激(每毫克叶绿素a 143-173摩尔O2 / h)。当我们监测铁氰化钾的还原时,即使观察到的现象与Photosystem-II的氧气释放相同,也没有获得电子传输的刺激。在同一实验中,未记录到对光磷酸化的刺激,但是当在0.75 M柠檬酸钾中直接分离类囊体时,高浓度的盐会抑制O2的释放,铁氰化物的还原和光磷酸化。类囊体的行为似乎受到其初始治疗的影响。

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