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A comprehensive study of the hormetic influence of biosynthesized AgNPs on regenerating rice calli of indica cv. IR64

机译:综合研究AgNPs对metic稻再生稻愈伤组织的钟情性影响。 IR64

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摘要

Rice is one of the most widely cultivated crops worldwide; however, it is not amenable to genetic manipulations, owing to its poor response to tissue culture and regeneration in vitro. To improve its response to tissue culture, we evaluated the influence of biosynthesized silver nanoparticles on callus induction, regeneration and rhizogenesis in Indica rice cv. IR64. Silver nanoparticles were biosynthesized by using silver nitrate and Parthenium hysterophorus plant extract, and were characterized by UV-visible spectroscopy, Fourier-transform infrared spectroscopy, Transmission electron microscopy and X-ray diffraction. The biosynthesized silver nanoparticles (PHAgNPs), when supplemented in tissue culture medium, promoted callus induction frequency, callus regeneration and rhizogenesis at concentrations of 10 mg l −1, 5 mg l−1 and 10 mg l−1, respectively. Further examination of the endogenous hormonal levels in regenerating calli revealed that AgNPs enhanced regeneration by alleviating abscisic acid and ethylene levels in the plant tissue. The stimulatory influence eliciting the regeneration response was found to be optimal with the supplementation of 5 mg l−1 PHAgNPs in the regeneration medium; the malondialdehyde, proline and hydrogen peroxide levels were also lower than those in the control, thus suggesting improved antioxidant status. Our results indicated that biosynthesized PHAgNPs may have the potential to positively influence tissue culture of recalcitrant varieties.
机译:稻米是世界上种植最广泛的农作物之一。但是,由于其对体外组织培养和再生的反应较差,因此不适合进行基因操作。为了改善其对组织培养的反应,我们评估了生物合成的银纳米颗粒对In稻简历中愈伤组织的诱导,再生和发根的影响。 IR64。用硝酸银和Part草提取物生物合成银纳米颗粒,并通过紫外可见光谱,傅里叶变换红外光谱,透射电子显微镜和X射线衍射对其进行表征。当在组织培养基中添加生物合成的银纳米颗粒(PHAgNPs)时,其浓度分别为10 mg -1 ,5 mg l -1 时,可以促进愈伤组织的诱导频率,愈伤组织的再生和发根。 sup>和10 mg l -1 。对再生愈伤组织中内源激素水平的进一步检查表明,AgNPs通过减轻植物组织中的脱落酸和乙烯水平来增强再生。发现在再生培养基中添加5 mg l -1 PHAgNPs可引起最佳的再生反应。丙二醛,脯氨酸和过氧化氢的含量也低于对照组,因此表明抗氧化剂的状态有所改善。我们的结果表明,生物合成的PHAgNPs可能具有积极影响顽calc品种的组织培养的潜力。

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