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[质子载体作为小麦根细胞线粒体超微结构中能量依赖性变化的诱导剂]

[Protonophores as inducers of energy dependent changes in the ultrastructure of wheat root cells mitochondria].

作者信息

Polygalova O O, Ponomareva A A

出版信息

Tsitologiia. 2010;52(3):211-8.

Abstract

The effects of protonophores, 2, 4-DNP (2, 4-dinitrophenol) and CCCP (carbonyl cyanide m-chlorophenyl-hydrazone), on plasma membrane potential, release of K+ into incubation medium, respiratory metabolism, ATP content, and changes in the ultrastructure of cells from excised roots of wheat seedlings were studied. Dissipation of the plasma membrane potential, release of K+ ions and inhibition of the rate of oxygen consumption by the cells were observed following 1 h incubation of roots with the protonophores. Mitochondrial had condensed appearance with numerous sharply defined and slightly swollen cristae. The evidence for cytoplasmic acidification was provided by an increase in plasma membrane potential, a decrease in K+ release into the incubation medium and an increase in ATP content in the cells after 4 h treatment with the protonophores. The protonophores caused unusual spatial arrangements of cristae in mitochondria, e. g. stacked on the top of each other, or having the shape of propellers or florets. Such re-organization of cristae might be of adaptive significance in response to increased concentration of H+ in cytoplasm. After 6 h exposure of the cells to the protonophores, cells ultrastructure destruction started. It is suggested that observed ultrastructural changes in the mitochondria reflect changes in their functional activity and the physiological state of cells during their long-term exposure to the protonophores.

摘要

研究了质子载体2,4-二硝基苯酚(2,4-DNP)和羰基氰化物间氯苯腙(CCCP)对小麦幼苗离体根细胞质膜电位、钾离子释放到培养液中的情况、呼吸代谢、ATP含量以及细胞超微结构变化的影响。用质子载体处理根1小时后,观察到质膜电位的消散、钾离子的释放以及细胞耗氧速率的抑制。线粒体呈现浓缩的外观,有许多清晰界定且略有肿胀的嵴。在用质子载体处理4小时后,质膜电位增加、钾离子释放到培养液中的量减少以及细胞内ATP含量增加,这些都为细胞质酸化提供了证据。质子载体导致线粒体嵴出现异常的空间排列,例如彼此堆叠,或者呈螺旋桨或小花的形状。嵴的这种重新组织可能在响应细胞质中氢离子浓度增加时具有适应性意义。细胞暴露于质子载体6小时后,细胞超微结构开始破坏。有人认为,观察到的线粒体超微结构变化反映了它们在长期暴露于质子载体期间功能活性的变化以及细胞的生理状态。

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