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首页> 外文期刊>European Journal of Medicinal Plants >Stress Effects of TiO2 and NP-TiO2 on CatalaseEnzyme and some Physiological Characteristics ofMelissa officinalis L.
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Stress Effects of TiO2 and NP-TiO2 on CatalaseEnzyme and some Physiological Characteristics ofMelissa officinalis L.

机译:TiO2和NP-TiO2胁迫对梅M叶片过氧化氢酶及某些生理特性的影响。

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Aims: Today, detection of risk effects of metal and metal nanoparticles over environment has attracted much attention. Plants are always exposed to considerable nanoparticles. So we decided to study the stress effect of titanium dioxide (TiO2) and titanium dioxide nanoparticles (NP-TiO2) phytotoxicity on catalase (CAT) enzyme and some physiological characteristics of Melissa officinalis L. plant including germination, root length, shoot length, and photosynthetic pigments. Place and Duration of Study: The experiment was conducted in 2013 in the Research Laboratory of Islamic Azad University of Falavarjan, Isfahan, Iran. Methodology: Seeds were treated with solutions of TiO2 and NP-TiO2 in 4 replicates. The obtained results were the mean of 4 replicates±SD. Finally the results were analyzed using SPSS18 statistical software.Results: The results indicated that different treatments of TiO2 and NP-TiO2 compared to the control group had no significant effect on germination percentage. However, they had a positive effect on root length, shoot length, and photosynthetic pigments (chlorophylls and carotenoids). At low concentrations, TiO2 and NP-TiO2 had a stimulatory effect on all parameters except the germination. NP-TiO2 had increase effect on CAT activity and TiO2 had the decrease effect on it.Conclusion: The ROS stress which produce by NPs, can stimulated the antioxidant enzymes in plants. In this article, the ROS stress had increased effect on CAT activity. To understand the positive and negative effects of nanoparticles on other physiological characteristics of Melissa officinalis L. requires further investigation.
机译:目的:如今,检测金属和金属纳米粒子对环境的风险影响已引起广泛关注。植物总是接触大量的纳米颗粒。因此,我们决定研究二氧化钛(TiO2)和二氧化钛纳米颗粒(NP-TiO2)对过氧化氢酶(CAT)酶的植物毒性胁迫以及蜜蜂属植物的生理特性,包括发芽,根长,枝条长和光合色素。研究的地点和持续时间:该实验于2013年在伊朗伊斯法罕的伊斯兰阿扎德大学法拉瓦让大学研究实验室中进行。方法:将种子用TiO2和NP-TiO2溶液处理4次。所得结果为4次重复±SD的平均值。结果:结果表明,与对照组相比,TiO2和NP-TiO2的不同处理对发芽率无显着影响。但是,它们对根长,芽长和光合色素(叶绿素和类胡萝卜素)具有积极作用。在低浓度下,TiO2和NP-TiO2对发芽​​以外的所有参数都有刺激作用。 NP-TiO2对CAT活性有增强作用,而TiO2对CAT活性有降低作用。结论:NPs产生的ROS胁迫可以刺激植物的抗氧化酶。在本文中,ROS胁迫对CAT活性的影响增加。要了解纳米颗粒对蜜蜂issa的其他生理特征的正反作用,需要进一步研究。

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