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Exogenous application of phytosynthesized nanoceria to alleviate ferulic acid stress in Solanum lycopersicum

机译:植物合酶化纳米钙剂的外源性应用于茄子植物霉菌中的阿魏酸胁迫

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Phytosynthesized cerium oxide nanoparticles (nanoceria) using Thymus serpyllum flower extract were used as cytoprotective and antioxidant for alleviating ferulic acid (FA) stress in Solanum lycopersicum in hydroponic culture. XRD, SEM and PSA studies revealed cubic structure, spherical shape and size of the particles ranging from 21 to 100 nm respectively. FTIR (study) indicated that some biomolecules were bound to the surface of nanoceria as capping and stabilizing agent. FA induced detrimental effects on photosynthetic activity while protective effects of nanoceria in combined treatments were evident from chlorophyll fluorescence data and pigment analysis. The exogenous application of nanoceria under FA stress led to drop in malondialdehyde and electrolyte leakage while pigment contents were augmented. The involvement of green synthesized nanoceria as an antioxidant may protect crop plants from autointoxication, one of the major problems in monocropping. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用胸腺六粒花提取物的植物氧化铈纳米颗粒(纳米钙)用作细胞保护和抗氧化剂,用于缓解水培培养中的溶族苷中的阿魏酸(Fa)胁迫。 XRD,SEM和PSA研究揭示了分别为21至100nm的立方结构,球形形状和尺寸的颗粒。 FTIR(研究)表明一些生物分子作为覆盖和稳定剂结合到纳米细胞表面。 FA诱导对光合作用的不利影响,而纳米细胞在组合治疗中的保护作用是从叶绿素荧光数据和颜料分析中明显的。纳米细胞的外源性应用在FA胁迫下导致丙二醛和电解质泄漏的下降,而颜料含量被增强。绿色合成纳米菌作为抗氧化剂的参与可以保护农作物植物免受海洋作品中的一个主要问题之一。 (c)2016年Elsevier B.v.保留所有权利。

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