纳米氧化铁对辣椒体外生长、生理和胼胝质形成的影响

A. Iranbakhsh, A. Ghaderi
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引用次数: 1

摘要

本研究的目的是在完全随机的体外条件下研究氧化铁纳米颗粒(FeO-NPs)对辣椒(Capsicum annuum L.)生长、分化、解剖和生理的影响。幼苗在含有四种浓度的FeO NPs(0、1、10和20mgl-1)的MS培养基中培养。此外,在两种不同的激素条件下(0.5mgl-1 2,4D+0.5mgl-1BAP或0.5mgl-1BAP+1mgl-1Bin),评估了不同浓度的FeO-NPs对愈伤组织形成的影响。结果表明,FeO NPs的施用显著增加了根系和地上部的生物量积累。此外,FeO NPs提高了光合作用色素(叶绿素a、叶绿素b和类胡萝卜素)的浓度。FeO-NPs在培养基中的存在以激素依赖的方式影响愈伤组织的形成。不同浓度的FeO NPs在2、4-D和BAP处理下诱导愈伤组织的形成。然而,在激肽和2,4-D的作用下,它并没有显著增加愈伤组织的形成。这项研究的结果表明,在最佳剂量下应用FeO NPs可以提高植物产量,尤其是在体外条件下。
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The effect of nano-iron oxide on growth, physiology, and callogenesis in pepper in vitro
. The aim of this research was to study the effect of iron oxide nanoparticles (FeO NPs) on the growth, differentiation, anatomy, and physiology of pepper ( Capsicum annuum L.) on the basis of a completely randomized design in vitro condition. Seedlings were cultured in MS medium containing four concentrations of FeO NPs (0, 1, 10, and 20 mgl -1 ). Also, the effect of the different concentrations of FeO NPs on callus formation under two various hormone conditions (0.5mgl -1 2,4D+0.5 mgl -1 BAP or 0.5 mgl -1 BAP+1 mgl -1 Kin) were assessed. The results showed that the application of FeO NPs significantly increased biomass accumulation in both roots and shoots. Moreover, FeO NPs enhanced the concentrations of photosynthesis pigments (chllrophyll a , chlorophyll b , and carotenoids). The presence of FeO NPs in culture medium affected callus formation in a hormone-dependent manner. Different concentration of FeO NPs induced the callus formation under 2, 4-D and BAP treatments. However, it did not significantly increase callus formation under the kinitin and 2,4-D. The findings of this research indicated that the application of FeO NPs at optimized doses may improve plant production, especially in vitro condition.
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