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Age-related changes in oxidative stress markers and abscisic acid levels in a drought-tolerant shrub, Cistus clusii grown under Mediterranean field conditions

机译:在地中海田间条件下生长的耐旱灌木Cistus clusii的氧化应激标志物和脱落酸水平与年龄相关的变化

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摘要

Compared with our knowledge of senescence in annuals and biennials, little is known about age-related changes in perennials. To get new insights into the mechanisms underlying aging in perennials, we measured oxidative stress markers in leaves and organelles, together with abscisic acid levels in leaves of 2- and 7-year-old Cistus clusii dunal plants grown under Mediterranean field conditions. Recently emerged leaves, which either appeared during autumn or spring, were compared to evaluate the effects of environmental constraints on oxidative stress and abscisic acid accumulation as plants aged. Plant aging led to an enhanced oxidation of α-tocopherol and ascorbate, increased lipid peroxidation and reduced PSII efficiency in leaves during the more stressful conditions of spring and summer, but not during autumn. Analyses of lipid peroxidation in organelles isolated from the same leaves revealed that oxidative stress occurred both in chloroplasts and mitochondria. Although both plant groups showed similar leaf water and nitrogen contents throughout the study, abscisic acid levels were markedly higher (up to 75%) in 7-year-old plants compared to 2-year-old plants throughout the study. It is concluded that (a) meristematic tissues of C. clusii maintain the capacity to make new leaves with no symptoms of oxidative stress for several years, unless these leaves are exposed to environmental constraints, (b) leaves of oldest plants show higher oxidative stress than those of young plants when exposed to adverse climatic conditions, thus supporting the idea that the oxidative stress associated with aging is due at least partly to extrinsic factors, (c) at the subcellular level, age-induced oxidative stress occurs both in chloroplasts and mitochondria, and (d) even in the absence of environmental stress, newly emerged leaves accumulate higher amounts of ABA as plants age.
机译:与我们对一年生和每两年一次的衰老知识相比,人们对多年生的与年龄相关的变化知之甚少。为了获得对多年生植物衰老的潜在机制的新见解,我们测量了在地中海田间条件下生长的2岁和7岁Cistus clusii dunal植物叶片和细胞器中的氧化应激标记以及叶片中的脱落酸水平。比较秋天或春季出现的新近出现的叶子,以评估环境限制因素对植物衰老时氧化胁迫和脱落酸积累的影​​响。在春季和夏季(而不是秋季)的胁迫条件下,植物的衰老导致α-生育酚和抗坏血酸的氧化增强,脂质过氧化增强和叶片PSII效率降低。分析从相同的叶子中分离的细胞器中的脂质过氧化反应表明,氧化应激在叶绿体和线粒体中均发生。尽管在整个研究中两组植物的叶片水分和氮含量均相似,但与整个研究中的2岁植物相比,7岁植物中的脱落酸水平明显更高(高达75%)。结论是:(a)克氏梭菌的分生组织在数年内保持无氧化应激症状的新叶片的能力,除非这些叶片暴露于环境限制下,(b)最老植物的叶片显示较高的氧化胁迫与年轻植物相比,当暴露于不利的气候条件下时,与衰老相关的氧化应激至少部分是由于外在因素引起的,(c)在亚细胞水平上,年龄诱导的氧化应激发生在叶绿体和线粒体,以及(d)即使在没有环境胁迫的情况下,新出现的叶子也随着植物的衰老而积累更多的ABA。

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  • 来源
    《Planta》 |2007年第4期|1039-1049|共11页
  • 作者单位

    Departament de Biologia Vegetal Facultat de Biologia Universitat de Barcelona Avinguda Diagonal 645 08028 Barcelona Spain;

    Departament de Biologia Vegetal Facultat de Biologia Universitat de Barcelona Avinguda Diagonal 645 08028 Barcelona Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abscisic acid; Aging; Antioxidants; Oxidative stress; Perennials; Senescence;

    机译:脱落酸;老化;抗氧化剂;氧化应激;多年生植物;衰老;

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