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首页> 外文期刊>Plant physiology >Changes in mitochondrial electron partitioning in response to herbicides inhibiting branched-chain amino acid biosynthesis in soybean
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Changes in mitochondrial electron partitioning in response to herbicides inhibiting branched-chain amino acid biosynthesis in soybean

机译:除草剂抑制大豆中支链氨基酸生物合成的线粒体电子分配变化

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摘要

The adaptation of the respiratory metabolism in roots of soybean (Glycine max L. Merr. cv Ransom) treated with herbicides that inhibit the enzyme acetolactate synthase (ALS) was analyzed. A new gas phase dual-inlet mass spectrometry system for ;simultaneous measurement of O-34(2) to O-32(2) and O-2 to N-2 ratios has been developed. This system is more accurate than previously described systems, allows measurements of much smaller oxygen gradients, and, as a consequence, works with tissues that have lower respiration rates. ALS inhibition caused an increase of the alternative oxidase (AOX) protein and an accumulation of pyruvate. The combination of these two effects is likely to induce the activation of the alternative pathway and its participation in the total respiration. Moreover, the start of the alternative pathway activation and the increase of AOX protein were before the decline in the activity of cytochrome pathway. The possible role of AOX under ALS inhibition is discussed.
机译:分析了用抑制乙酰乳酸合酶(ALS)的除草剂处理过的大豆(Glycine max L. Merr。cv Ransom)根中呼吸代谢的适应性。开发了一种新的气相双入口质谱系统,可同时测量O-34(2)与O-32(2)和O-2与N-2的比率。该系统比先前描述的系统更准确,可测量更小的氧气梯度,因此,可用于呼吸频率较低的组织。 ALS抑制导致替代氧化酶(AOX)蛋白的增加和丙酮酸的积累。这两种作用的结合可能会诱导替代途径的激活及其参与总呼吸。此外,替代途径激活的开始和AOX蛋白的增加是在细胞色素途径活性下降之前。讨论了AOX在ALS抑制作用下的可能作用。

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