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Physiological and biochemical responses of Melissa officinalis L. to nickel stress and the protective role of salicylic acid

机译:Melissa Officinalis L的生理生化反应与水杨酸的镍胁迫和保护作用

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The present study investigated the mediatory effects of salicylic acid (SA) in alleviating nickel (Ni) toxicity in Melissa officinalis L. One-month-old plants were exposed to different levels of Ni and SA concentrations in sand culture under greenhouse conditions. Excess Ni significantly inhibited the growth indices and dramatically increased accumulation of Ni in the leaves and roots. Exogenously SA applications (1.0 mM) led to a substantial improvement in the shoot and root fresh and dry weights. Foliar application of SA mitigated the deleterious effects of Ni and decreased its transport to the shoots. The results showed a significant loss in chlorophylls and carotenoids contents only at 500 mu M of Ni. The impact of SA was not significant in terms of chlorophyll contents, while carotenoid contents of the Ni-stressed plants were significantly affected by SA. Exposure to Ni did not modify proline accumulation. Hydrogen peroxide accumulation was observed under Ni stress, while lipid peroxidation significantly decreased at the same conditions. Application of SA caused a significant decrease in electrolyte leakage of Ni-stressed plants. Due to the high potential for Ni accumulation in the roots and translocation factor values lower than 1, M. officinalis could be introduced as an excluder medicinal plant.
机译:本研究研究了水杨酸(SA)在梅利萨officalisl中缓解镍(Ni)毒性的介质作用。在温室条件下,单月级的植物暴露于不同水平的Ni和SA浓度。过量的Ni显着抑制生长指标,并大大增加了叶子和根部的Ni积累。外源SA应用(1.0毫米)导致枝条和根新鲜干重的大幅改善。 Sa的叶面申请减轻了Ni的有害影响并降低了运输到枝条。结果表明,叶绿素和类胡萝卜素含量仅为500 mu m含量的含量显着损失。 SA对叶绿素含量的影响并不重要,而SA的Ni胁迫植物的类胡萝卜素含量显着影响。暴露于Ni没有修饰脯氨酸积聚。在Ni应力下观察到过氧化氢积聚,而脂质过氧化在相同的条件下显着降低。 SA的应用导致Ni胁迫植物电解质泄漏的显着降低。由于Ni积累的高潜力,并且易于1,M. Officinalis可以作为排除药物施用。

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