首页> 美国卫生研究院文献>Plant Physiology >Sensitivity of Superoxide Dismutase Transcript Levels and Activities to Oxidative Stress Is Lower in Mature-Senescent Than in Young Barley Leaves.
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Sensitivity of Superoxide Dismutase Transcript Levels and Activities to Oxidative Stress Is Lower in Mature-Senescent Than in Young Barley Leaves.

机译:成熟衰老的超氧化物歧化酶转录水平和对氧化应激的敏感性比年轻的大麦叶片低。

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摘要

Antioxidant enzyme activities are inducible by oxidative stress and decrease during senescence. To determine if the age-dependent decrease of superoxide dismutase (SOD) activities is due to decreased sensitivity to oxidative stress, we have investigated the changes in steady-state levels of transcripts and activities of mitochondrial Mn-SOD (SOD1), chloroplastic Fe-SOD (SOD2), and cytoplasmic Cu-Zn-SOD (SOD3) in young and mature-senescent detached barley (Hordeum vulgare L.) leaves in response to incubation in darkness, growth light (20 W m-2), and photooxidative stress conditions (100 W m-2 with 21 or 100% O2). For a comparison, changes in the mRNA for ribulose bisphosphate carboxylase were also measured. After leaf detachment, the abundance of all three SOD mRNAs increased, then decreased and eventually stabilized after 6 h of incubation. After 20 h of incubation under darkness SOD transcripts decreased in both young and mature-senescent leaves. While under strong photooxidative stress the levels of the three SOD transcripts significantly increased in young leaves; in mature-senescent leaves SOD2 and, to lesser extent, SOD1 and SOD3 transcripts decreased. Generally, SOD activity changes were similar to those of mRNAs. It is proposed that oxidative damage during senescence could be favored by the inability of senescing leaves to modulate the steady-state level of SOD mRNA, and probably those of other antioxidant enzymes, concomitant with the rate of oxyradical formation.
机译:抗氧化酶活性可通过氧化应激诱导,并在衰老过程中降低。为了确定年龄相关的超氧化物歧化酶(SOD)活性下降是否是由于对氧化应激的敏感性降低所致,我们调查了转录本稳态水平和线粒体Mn-SOD(SOD1),叶绿体Fe-响应于在黑暗中孵育,生长光(20 W m-2)和光氧化胁迫,年轻和成熟衰老的分离大麦(大麦)的SOD(SOD2)和细胞质Cu-Zn-SOD(SOD3)叶片条件(100 W m-2与21或100%O2)。为了比较,还测量了核糖二磷酸羧化酶的mRNA变化。叶片脱离后,所有6种SOD mRNA的丰度均升高,然后降低,并在孵育6小时后稳定下来。在黑暗中孵育20小时后,年轻和成熟衰老叶片中的SOD转录物均下降。在强光氧化胁迫下,幼叶中三种SOD转录物的水平显着增加;成熟衰老叶片中的SOD2含量较低,而SOD1和SOD3转录物含量较低。通常,SOD活性变化与mRNA相似。有人提出,衰老过程中的氧化损伤可能是由于衰老的叶片无法调节SOD mRNA的稳态水平,以及其他抗氧化酶的稳态水平与氧自由基的形成速率有关。

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