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Ultra-low doses of melafen affect the energy of mitochondria

机译:美拉芬的超低剂量会影响线粒体的能量

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Addition of the organophosphorous plant growth regulator - melafen to the mitochondria incubation medium resulted in modification of energy thereof. The modification was dose dependent one. The melafen concentrations 2?×?10-12, 2?×10-18?and 2?×?10-21?М?raised the maximum rates for oxidation of NAD+-dependent substrates, elevated the efficiency of oxidative phosphorylation and activated electron transport in the terminal step of mitochondrial respiratory chain. Melafen stimulated electron transport during oxidation of succinate by rat liver mitochondria, but had no effect on the rate of this substrate oxidation by sugar beet root mitochondria, which was an evidence for adaptive properties of the preparation. Water stress resulted in decreasing the maximum rates of oxidation of NAD+-dependent substrate and decreasing the electron transport rates at the end of the respiratory chain by 30%. A pretreatment of pea seeds with a 10-7% solution of melafen led to elimination of differences in energetic of mitochondria of sprouts growing under standard conditions and under conditions of low moisture. By stimulating the activity of NAD+-dependent dehydrogenases and activation electron transport in the cytochrome oxidase part of respiratory chain, melafen stimulated energy metabolism in the cells and these effects determine the adaptive properties thereof.
机译:向线粒体温育培养基中添加有机磷植物生长调节剂美拉芬导致其能量的改变。修饰是剂量依赖性的。 melafen浓度2?×?10-12、2?×10-18?和2?×?10-21?М?提高了NAD +依赖性底物的最大氧化速率,提高了氧化磷酸化和活化电子的效率在线粒体呼吸链末端的转运。 Melafen在大鼠肝线粒体氧化琥珀酸酯的过程中刺激了电子运输,但对甜菜根线粒体对该底物氧化的速率没有影响,这证明了该制剂的适应性。水分胁迫导致NAD +依赖性底物的最大氧化速率降低,并使呼吸链末端的电子传输速率降低30%。用10-7%的Melafen溶液预处理豌豆种子可消除在标准条件下和低水分条件下生长的芽苗线粒体能量差异。通过刺激NAD +依赖性脱氢酶的活性和激活呼吸链的细胞色素氧化酶部分中的电子,melafen刺激了细胞中的能量代谢,这些作用决定了其适应性。

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