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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >In vitro effect of zinc oxide nanoparticles on Nicotiana tabacum callus compared to ZnO micro particles and zinc sulfate (ZnSO4)
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In vitro effect of zinc oxide nanoparticles on Nicotiana tabacum callus compared to ZnO micro particles and zinc sulfate (ZnSO4)

机译:与ZnO微颗粒和硫酸锌(ZnSO4)相比,氧化锌纳米粒子对氧化锌纳米粒子的体外效果(ZnSO4)

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摘要

Nano-technology has changed the properties of metal elements' delivery into and effect on living systems. The current study, first, evaluated different combinations of plant growth regulators NAA, 2,4-d and KIN on Nicotiana tabacum callus induction from root, internode, petiole and leaf explants. Two mg L-1 NAA with 0.1 mg L-1 KIN on Murashige and Skoog (MS) medium induced calli in all explant sources. Then, the effect of different concentrations of nP-ZnO (0.015, 0.03, 0.06, 0.12, 0.24 mM) and mu P-ZnO (0.03, 0.06, 0.12, 0.24 mM) compared to ZnSO4 (0.03 mM) on cell toxicity was investigated. SEM microscopy, XRD and EDX analyses were used to determine particles characteristics. Higher zinc content was accumulated in calli under nP-ZnO concentrations compared with mu P-ZnO, which was positively correlated with calli fresh and dry weights. The nP-ZnO induced oxidative stress more significantly than mu P-ZnO. Protein content did not increase under mu P-ZnO, while it was raised at all concentrations of nP-ZnO that had positive correlation with MDA and ROS. SOD enzyme activity increased at all levels of mu P-ZnO but remained unchanged under all levels of nP-ZnO compared to control. Ferric reducing antioxidant power (FRAP) was more sensitive than alpha, alpha-diphenyl-beta-picrylhydrazyl (DPPH) for determining plant antioxidant capacity under nP-ZnO stress. The result showed that nP-ZnO induced a combined growth promoting and stress-induction effect in tobacco callus cells in a dose-dependent manner. The toxicity level of nP-ZnO was ameliorated compared to similar mu P-ZnO concentrations. The chemical bio-reactivity of nP-ZnO-based Zn2+ could cause its fast-responsive and modified influence in tobacco cells.
机译:纳米技术改变了金属元素的交付能力和对生活系统的影响。目前的研究首先,评估了植物生长调节剂NAA,2,4-D和Kin的不同组合,从根,节间,叶片和叶片外植物中诱导烟草愈伤组织诱导。两个Mg L-1 NAA,Murashige和Skoog(MS)中的0.1毫克L-1 Kin(MS)中等诱导的疾病。然后,研究了与ZnSO4(0.03mm)相比,不同浓度的NP-ZnO(0.015,0.03,0.06,0.12,0.24mm)和Mu P-ZnO(0.03,0.06,0.24mm)的效果进行了研究。 SEM显微镜检查,XRD和EDX分析用于确定粒子特性。与Mu P-ZnO相比,NP-ZnO浓度下,在Calli中累积较高的锌含量,与MU P-ZnO相比,与Calli新鲜和干重相比,呈呈正相关。 NP-ZnO诱导比mu p-ZnO更显着的氧化胁迫。蛋白质含量在mu p-ZnO下没有增加,而在与MDA和ROS阳性相关的所有浓度的NP-ZnO时升高。与对照相比,SOD酶活性在所有水平的亩水P-ZnO中增加,但在所有水平的NP-ZnO下保持不变。在NP-ZnO应激下,FERRIC减少抗氧化能力(FRAP)比α,α-二苯基-β-富铬酰基(DPPH)更敏感。结果表明,NP-ZnO以剂量依赖性方式诱导烟草愈伤组织细胞中的组合生长和胁迫诱导效应。与相似的Mu P-ZnO浓度相比,改善了NP-ZnO的毒性水平。 NP-ZnO基Zn2 +的化学生物反应性可能导致烟草细胞的快速响应和改性的影响。

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