首页> 外文期刊>Archives of Biological Sciences >IMPACT OF APPLICATION OF ZINC OXIDE NANOPARTICLES ON CALLUS INDUCTION, PLANT REGENERATION, ELEMENT CONTENT AND ANTIOXIDANT ENZYME ACTIVITY IN TOMATO (SOLANUM LYCOPERSICUM MILL.) UNDER SALT STRESS
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IMPACT OF APPLICATION OF ZINC OXIDE NANOPARTICLES ON CALLUS INDUCTION, PLANT REGENERATION, ELEMENT CONTENT AND ANTIOXIDANT ENZYME ACTIVITY IN TOMATO (SOLANUM LYCOPERSICUM MILL.) UNDER SALT STRESS

机译:盐胁迫下氧化锌纳米粒子对番茄诱导的愈伤组织诱导,植物再生,元素含量和抗氧化酶活性的影响

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The properties of nanomaterials and their potential applications have been given considerable attention by researchers in various fields, especially agricultural biotechnology. However, not much has been done to evaluate the role or effect of zinc oxide nanoparticles (ZnO-NPs) in regulating physiological and biochemical processes in response to salt-induced stress. For this purpose, some callus growth traits, plant regeneration rate, mineral element (sodium, potassium, phosphorous and nitrogen) contents and changes in the activity of superoxide dismutase (SOD) and glutathione peroxidase (GPX) in tissues of five tomato cultivars were investigated in a callus culture exposed to elevated concentrations of salt (3.0 and 6.0 g L~(-1)NaCl), and in the presence of zinc oxide nanoparticles (15 and 30 mg L~(-1)). The relative callus growth rate was inhibited by 3.0 g L~(-1) NaCl; this was increased dramatically at 6.0 g L~(-1). Increasing exposure to NaCl was associated with a significantly higher sodium content and SOD and GPX activities. Zinc oxide nanoparticles mitigated the effects of NaCl, and in this application of lower concentrations (15 mg L~(-1)) was more effective than a higher concentration (30 mg L~(-1)). This finding indicates that zinc oxide nanoparticles should be investigated further as a potential anti-stress agent in crop production. Different tomato cultivars showed different degrees of tolerance to salinity in the presence of ZnO-NPs. The cultivars Edkawy, followed by Sandpoint, were less affected by salt stress than the cultivar Anna Aasa.DOI: 10.2298/ABS151105017AKey words: Nano biotechnology, in vitro culture, protein, salinity, superoxide dismutase, glutathione peroxidaseReceived: November 5, 2015; Revised: February 11, 2016; Accepted: February 12, 2016; Published online: March 21, 2016How to cite this article: Alharby HF, Metwali EMR, Fuller MP, Aldhebiani AY. Impact of application of zinc oxide nanoparticles on callus induction, plant regeneration, element content and antioxidant enzyme activity in tomato (Solanum lycopersicum Mill.) under salt stress. Arch Biol Sci. 2016;68(4):723-35.
机译:纳米材料的性质及其潜在应用已受到各个领域的研究人员的极大关注,尤其是农业生物技术。但是,还没有太多的工作来评估氧化锌纳米颗粒(ZnO-NPs)在调节生理和生化过程中对盐诱导的应激的反应中的作用或效果。为此,研究了五个番茄品种组织中一些愈伤组织的生长特性,植株再生速率,矿质元素(钠,钾,磷和氮)含量以及超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GPX)活性的变化。在暴露于高浓度盐(3.0和6.0 g L〜(-1)NaCl)的愈伤组织培养物中,以及在氧化锌纳米颗粒(15和30 mg L〜(-1))存在下进行。 3.0 g L〜(-1)NaCl抑制相对愈伤组织的生长。在6.0 g L〜(-1)时急剧增加。越来越多的NaCl暴露与更高的钠含量以及SOD和GPX活性有关。氧化锌纳米颗粒减轻了NaCl的影响,在此应用中,较低浓度(15 mg L〜(-1))比较高浓度(30 mg L〜(-1))更有效。这一发现表明,应进一步研究氧化锌纳米颗粒作为作物生产中潜在的抗应激剂。在ZnO-NPs存在下,不同的番茄品种对盐分的耐受性不同。品种:爱德凯(Edkawy)和桑德波特(Sandpoint)受盐胁迫的影响要小于品种安娜·阿萨(Anna Aasa)。DOI:10.2298 / ABS151105017A修订日期:2016年2月11日;接受:2016年2月12日;在线发布:2016年3月21日如何引用本文:Alharby HF,Metwali EMR,Fuller MP,Aldhebiani AY。氧化锌纳米粒子的应用对盐胁迫下番茄(Solanum lycopersicum Mill。)愈伤组织的诱导,植株再生,元素含量和抗氧化酶活性的影响。 Arch Biol科学。 2016; 68(4):723-35。

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