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The role of salicylic acid in the prevention of oxidative stress elicited by cadmium in soybean plants

机译:水杨酸在预防镉引起的大豆植物氧化应激中的作用

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The protective action of salicylic acid (SA) pre-treatment on soybean plants before cadmium (Cd) addition was tested. Oxidative stress parameters, such as TBARS formation, glutathione and chlorophyll content, were altered by Cd, instead no differences were observed in plants only pre-treated with SA. Antioxidant enzymes were affected by Cd treatment, while SA protected against these effects. These findings indicated that SA could act as a protector against oxidative stress induced by Cd. Taking into account the fact that heme-oxygenase-1 (HO-1) has been previously described as a novel antioxidant enzyme, experiments were carried out to determine whether it was involved in the protection exerted by SA. As expected, Cd brought about an enhancement of 57 % in HO-1 activity and 150 % in protein content (150 %), SA also increased both the enzyme activity and its protein content (28 and 75 %, respectively). Surprisingly, the observed rise of HO activity and protein content under SA treatment was lower than that produced by Cd alone. These lower values indicated, that HO-1 could not be directly involved in the protection of SA against Cd effects. In order to shed light in the mechanisms involved in SA effects, Cd content was determined in the tissues of Cd treated plants with and without SA pre-treatment. Results indicated that, in the presence of SA, Cd uptake was inhibited, thus avoiding its deleterious effects. Moreover, the observed HO-1 activity enhancement by SA indicates that this phytohormone could be engaged in the signalling pathway of heme degradation.
机译:测试了水杨酸(SA)预处理在添加镉(Cd)之前对大豆植物的保护作用。镉改变了氧化应激参数,如TBARS的形成,谷胱甘肽和叶绿素含量,而在仅用SA预处理的植物中未观察到差异。抗氧化酶受Cd处理的影响,而SA保护免受这些影响。这些发现表明,SA可以作为抗镉诱导的氧化应激的保护剂。考虑到血红素加氧酶-1(HO-1)先前已被描述为一种新型的抗氧化酶,因此进行了实验以确定它是否参与了SA的保护作用。正如预期的那样,Cd的HO-1活性提高了57%,蛋白质含量提高了150%(150%),SA也提高了酶活性及其蛋白含量(分别为28%和75%)。出乎意料的是,在SA处理下观察到的HO活性和蛋白质含量的升高低于单独使用Cd所产生的升高。这些较低的值表明,HO-1不能直接参与SA对Cd的保护作用。为了阐明参与SA效应的机制,在经过和未进行SA预处理的情况下,测定了经过Cd处理的植物组织中的Cd含量。结果表明,在存在SA的情况下,抑制了Cd的吸收,从而避免了其有害作用。而且,通过SA观察到的HO-1活性增强表明该植物激素可以参与血红素降解的信号传导途径。

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