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首页> 外文期刊>Annals of Applied Biology >Mitochondrial proline oxidation is affected by hyperosmotic stress in durum wheat seedlings
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Mitochondrial proline oxidation is affected by hyperosmotic stress in durum wheat seedlings

机译:硬粒小麦幼苗中高渗胁迫影响线粒体脯氨酸的氧化

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The important role of plant mitochondria in the adaptation to environmental stresses at subcellular level has recently emerged. In particular, an important mitochondrial mechanism involved in the resistance to environmental stresses is the inhibition of proline oxidation. In order to study this physiological mechanism, we used both washed and purified durum wheat (Triticum durum) mitochondria (DWM) isolated from early seedlings germinated in two different NaCl solutions leading to either moderate or severe damage to growth. To assess the contribution of the osmotic component of stress, a parallel investigation was performed using hyperosmotic mannitol solutions. Comparison of the oxygen uptake rate in the course of proline oxidation, with that of the malate plus glutamate substrate pair and that of succinate showed that an early inhibition of proline oxidation occurs under stress. The drop of the proline-dependent oxygen uptake rate was as a result of a heavy inhibition of proline dehydrogenase (ProDH); on the other hand, malate plus glutamate-dependent and succinate-dependent oxidations were less inhibited, being the maintenance of oxygen uptake rate not dependent on alternative oxidase (AOX) pathway; in fact, DWM-AOX activity did not show any increase under our experimental stress conditions. The selective inhibition of proline oxidation should be considered a mitochondrial adaptation to stress rather than damage to mitochondrial oxidative properties. This result was achieved by means of a novel approach based on the comparison between oxygen uptake rates of washed and purified organelles.
机译:最近已经出现了植物线粒体在适应亚细胞水平的环境胁迫中的重要作用。特别地,参与抗环境压力的重要线粒体机制是脯氨酸氧化的抑制。为了研究这种生理机制,我们使用了从两种不同NaCl溶液中萌发的早期幼苗中分离得到的洗涤和纯化的硬质小麦(Triticum durum)线粒体(DWM),导致对生长的中等或严重破坏。为了评估压力的渗透成分的贡献,使用高渗甘露醇溶液进行了平行研究。比较脯氨酸氧化过程中的氧气吸收速率,苹果酸加谷氨酸底物对和琥珀酸盐的氧气吸收速率,表明在压力下会较早地抑制脯氨酸氧化。脯氨酸依赖性氧吸收率的下降是由于脯氨酸脱氢酶(ProDH)的严重抑制而导致的。另一方面,苹果酸加谷氨酸依赖和琥珀酸依赖的氧化受到的抑制较小,这是维持氧的摄取速率而不依赖于替代氧化酶(AOX)途径。实际上,在我们的实验压力条件下,DWM-AOX活性没有显示任何增加。脯氨酸氧化的选择性抑制应被认为是线粒体对应激的适应,而不是线粒体氧化特性的损害。该结果是通过一种基于洗涤和纯化细胞器氧吸收率比较的新颖方法来实现的。

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