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Succinoxidase Activity of Avocado Fruit Mitochondria in Relation to Temperature and Chilling Injury throughout the Climacteric Cycle

机译:鳄梨果实线粒体的琥珀氧化酶活性与整个更年期温度和冷害的关系

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摘要

Mitochondria were isolated from `Fuerte' avocado fruit (Persea americana Mill.) at four different stages of the respiratory climacteric. Preclimacteric fruit had the highest rate of succinate oxidation and the postclimacteric mitochondria the lowest. Subsequently, successive additions of ADP increased the respiratory control ratio.Arrhenius plots of succinate oxidation of intact mitochondria from climacteric rise and climacteric peak fruit showed two transition temperatures, while only one was observed in preclimacteric fruit. The low temperature phase transition was at about 9 C, while the high one was at 20 C. In postclimacteric fruit, the low temperature transition decreased to between 5 and 2 C. The state 3 rate of succinate oxidation was highest for mitochondria from preclimacteric fruit and decreased for each later stage. The state 4 rates for preclimacteric and climacteric rise were the same, while both the climacteric peak and postclimacteric rates were about 40% lower than the preclimacteric O2 uptake.The results indicate continuous changes in the mitochondrial membrane of the electron transport chain throughout the climacteric cycle. The change in the membrane influencing the phosphorylation system is greatest between climacteric rise and peak stages. Mitochondrial membranes of postclimacteric fruit are presumed to change from flexible disordered to solid ordered phase at a lower temperature than those of other climacteric stages.
机译:从呼吸更年期的四个不同阶段从“富尔特”鳄梨果实(Persea americana Mill。)中分离出线粒体。更年期前水果的琥珀酸氧化率最高,而更年期后线粒体的氧化率最低。随后,连续添加ADP可提高呼吸控制率。从更年期上升和更年期高峰果实完整线粒体的琥珀酸氧化Arrhenius图显示了两个转变温度,而在更年期前果实中仅观察到一个转变温度。低温相变大约在9 C,而高温相变大约在20C。在更年期后的果实中,低温转变降低到5至2C。琥珀酸的状态3氧化速率对于更年期前的果实的线粒体最高。并在以后的每个阶段减少。状态4的更年期前和更年期上升速率相同,而更年期峰值和更年期后速率均比更年期前O2吸收低40%,结果表明在整个更年期周期中,电子传输链的线粒体膜不断变化。 。在更年期上升和高峰阶段之间,影响磷酸化系统的膜变化最大。据推测,与其他更年期阶段相比,更年期后果实的线粒体膜从柔性无序阶段转变为固态有序阶段。

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