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Ozone primes changes in phytochemical parameters in the medicinal herb Hypericum perforatum (St. John's wort)

机译:臭氧引发药草金属化植物(St. John's Wort)的植物化学参数的变化

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Plants produce secondary metabolites promoting adaptation to changes in the environment and challenges by pathogenic microorganisms. Ozone (O-3), a crucial gaseous air pollutant, has been reported to alter the chemical composition of plants and this also involves changes in bioactive secondary compounds. The objective of this work was to assess under controlled conditions the possible role of O-3 (110 ppb, 5 h) as an elicitor of antioxidant compounds in Hypericum perforatum L. (St. John's Wort, SJW) plants at two stages, vegetative (VS, three-months old) and reproductive (RS, six-months-old) stage. At the end of the treatment, we found an early and transient burst of hydrogen peroxide (H2O2, + 35% in comparison to controls), a less efficient metabolism of the Halliwell-Asada cycle (as confirmed by the unchanged levels of ascorbate) and the up-regulation of the reduced/oxidized glutathione ratio (about 2-fold higher than control), which represent a typical initial stress response in VS plants. After 24 h of exposure, a significant reduction of H2O2 levels was observed that could be dependent on the activation of peroxidase activity (+ 26%), accumulation of total phenols, flavonoids and anthocyanins (+45, + 58 and + 2%, respectively) and increased antioxidant potential. A modification of the pool of soluble phenolics (at the quantitative and qualitative levels) was observed in VS and RS plants, so confirming its involvement in detoxification mechanisms. Our results show the potential of using O-3 to enhance the concentration of several antioxidant phytochemicals and consequently to increase the beneficial properties of SJW plants at different phenological stages.
机译:植物产生次级代谢物,促进适应环境和致病微生物的挑战。据报道,臭氧(O-3)是一种至关重要的气态空气污染物,以改变植物的化学成分,这还涉及生物活性二次化合物的变化。本作工作的目的是在受控条件下进行评估O-3(110ppb,5h)作为抗氧化剂化合物的抗氧化剂植物中的抗氧化化合物的可能作用,在两个阶段,植物(vs,三个月)和生殖(六个月,六个月)的阶段。在治疗结束时,我们发现了一种早期和瞬态的过氧化氢(H2O2,与对照相比的H 2 O 2,+ 35%),较低的Halliwell-Asada循环的效率较低(由抗坏血酸的不变水平证实)和上调降低/氧化的谷胱甘肽比(比对照的约2倍),其代表VS植物中的典型初始应力反应。在暴露24小时后,观察到H 2 O 2水平的显着降低,这可能取决于过氧化物酶活性(+ 26%)的活化,总酚的积累,黄酮类化合物和花青素(+ 45,+ 58和+ 2% )和增加的抗氧化潜力。在VS和RS植物中观察到可溶性酚类池(在定量和定性水平)的修饰,因此证实其参与排毒机制。我们的结果表明,使用O-3增强几种抗氧化植物化学物质浓度的潜力,从而增加了不同鉴别阶段的SJW植物的有益特性。

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