Comparison of MAPK and thioredoxin gene expression in wheat seedlings exposed to silver nitrate and silver nanoparticle

Javad Karimi, S. Mohsenzadeh
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Abstract

The extensive use of heavy metals and nanoparticles (NPs) has led to their release into the environment that might have negative impacts on both organisms and the environment. In this study, the molecular responses of wheat seedlings to silver nitrate and silver nanoparticles (AgNPs) were assessed by transcript accumulation analysis of genes coding for products potentially involved in heavy metal tolerance. A quantitative Real-time PCR experiment was performed with MAPK (Mitogen-activated protein kinase) and thioredoxin genes using RNA isolated from wheat shoots treated for 0, 2, 6, 12 and 24 h with AgNO3 and AgNPs at 100 mg-1L concentration. Results indicated that stressful conditions led to the antioxidant responses of wheat seedlings that could be reflected as changes in MAPK and thioredoxin gene transcripts. The genes expression patterns were slightly different. The expression of these genes in response to both treatments was high at the beginning of the stress and was decreased with time. Our results showed the effects of AgNO3 treatment were faster than AgNPs. We found that wheat seedlings might develop different strategies to cope with AgNO3 and AgNPs toxicity with change in the expression of MAPK and thioredoxin heavy metal-related genes.
硝酸银和纳米银对小麦幼苗MAPK和硫氧还蛋白基因表达的影响
重金属和纳米颗粒(NPs)的广泛使用导致它们释放到环境中,可能对生物和环境产生负面影响。本研究通过对小麦幼苗对硝酸银和纳米银(AgNPs)的转录积累分析,评估了小麦幼苗对硝酸银和纳米银(AgNPs)的分子反应。以100 mg-1L浓度AgNO3和AgNPs处理0、2、6、12和24 h的小麦芽为材料,对MAPK(丝裂原活化蛋白激酶)和硫氧还蛋白基因进行实时荧光定量PCR。结果表明,胁迫条件导致小麦幼苗的抗氧化反应可能反映在MAPK和硫氧还蛋白基因转录本的变化上。基因表达模式略有不同。这些基因的表达在胁迫开始时都很高,随着时间的推移而降低。我们的研究结果表明,AgNO3处理的效果比AgNPs快。我们发现,小麦幼苗可能通过改变MAPK和硫氧还蛋白重金属相关基因的表达,发展出不同的应对AgNO3和AgNPs毒性的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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