首页> 美国卫生研究院文献>PLoS Clinical Trials >Salicylic Acid and Sodium Salicylate Alleviate Cadmium Toxicity to Different Extents in Maize (Zea mays L.)
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Salicylic Acid and Sodium Salicylate Alleviate Cadmium Toxicity to Different Extents in Maize (Zea mays L.)

机译:水杨酸和水杨酸钠可减轻镉对玉米不同程度的毒性(Zea mays L.)

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摘要

The role of salicylic acid in Cd tolerance has attracted more attention recently but no information is available on the efficiency of different forms of salicylic acid. The aim was thus to investigate whether both the acid and salt forms of salicylic acid provide protection against Cd stress and to compare their mode of action. Young maize plants were grown under controlled environmental conditions. One group of 10-day-old seedlings were treated with 0.5 mM SA or NaSA for 1 day then half of the pants were treated with 0.5 mM Cd for 1 day. Another group of seedlings was treated with 0.5 mM CdSO4 for 1 day without pre-treatment with SA or NaSA, while a third group was treated simultaneously with Cd and either SA or NaSA. Both salicylic acid forms reduced the Cd accumulation in the roots. Treatment with the acidic form meliorated the Cd accumulation in the leaves, while Na-salicylate increased the phytochelatin level in the roots and the amount of salicylic acid in the leaves. Furthermore, increased antioxidant enzyme activity was mainly induced by the acid form, while glutathione-related redox changes were influenced mostly by the salt form. The acidic and salt forms of salicylic acid affected the two antioxidant systems in different ways, and the influence of these two forms on the distribution and detoxification of Cd also differed. The present results also draw attention to the fact that generalisations about the stress protective mechanisms induced by salicylic acid are misleading since different forms of SA may exert different effects on the plants via separate mechanisms.
机译:水杨酸在Cd耐受性中的作用近来引起了更多关注,但是尚无关于不同形式水杨酸效率的信息。因此,目的是研究水杨酸的酸形式和盐形式是否均可提供抗Cd胁迫的保护,并比较其作用方式。年轻的玉米植物在受控的环境条件下生长。一组10天大的幼苗用0.5 mM SA或NaSA处理1天,然后一半的裤子用0.5 mM Cd处理1天。另一组幼苗在不使用SA或NaSA预处理的情况下用0.5 mM CdSO4处理1天,而第三组同时用Cd和SA或NaSA进行处理。两种水杨酸形式都减少了Cd在根中的积累。用酸性形式处理可减轻叶片中Cd的积累,而水杨酸钠则可增加根中植物螯合素水平和叶片中水杨酸的含量。此外,增加的抗氧化酶活性主要是由酸形式引起的,而谷胱甘肽相关的氧化还原变化主要受盐形式的影响。水杨酸的酸性和盐形式以不同的方式影响两个抗氧化剂系统,并且这两种形式对Cd的分布和排毒的影响也不同。目前的结果也引起人们对水杨酸诱导的逆境保护机制的误解,因为不同形式的SA可能通过不同的机制对植物产生不同的影响,这一事实引起了人们的误解。

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