首页> 外文期刊>Journal of King Saud University >Seed priming with titanium dioxide nanoparticles enhances seed vigor, leaf water status, and antioxidant enzyme activities in maize ( Zea mays L.) under salinity stress
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Seed priming with titanium dioxide nanoparticles enhances seed vigor, leaf water status, and antioxidant enzyme activities in maize ( Zea mays L.) under salinity stress

机译:用二氧化钛纳米粒子的种子灌注增强了玉米的种子活力,叶水状态和抗氧化酶活性( Zea mays L.)在盐分应激下

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ObjectivesCurrent study illustrates the impact assessment of TiO2nano-particle seed priming on the overall germination, physiology in maize thriving under salinity stress.MethodologySeeds of maize cultivar were soaked in 40, 60 and 80?ppm aerated solution of TiO2nano-particle for one day and nano-primed seeds were then exposed to salinity stress, i.e., 200?mM NaCl on paper culture system.ResultsResults indicated that 60?ppm TiO2nano-priming treatment effect positively on the rate of germinate and growth of maize seedling under salinity stress. The experiment was carried out in sand as a growth medium with 60?ppm TiO2priming. Results exhibited that germination percentage, germination energy, seedling vigor index, lengths of root and shoot, fresh and dry weights of seedling, potassium ion (K+) concentration, relative water content (RWC), total phenolic and proline and contents, superoxide dismutase (SOD), catalase (CAT) and phenylalanine ammonia lyase (PAL) activities were significantly enhanced and mean emergence time (MET), sodium ion (Na+) concentration, membrane electrolyte leakage (MEL) and malondialdehyde (MDA) content were decreased by TiO2priming as compared to control under salinity stress.ConclusionSo, nano-priming with TiO2mitigates the salinity injury in maize and could be a significant alternate strategy to mitigate the deleterious impact of salinity stress in maize.
机译:目标电流研究说明了TiO2NANO-粒子初步对整体萌发的影响,玉米盐度浓度蓬勃蓬勃发展的生理学。玉米味道的水解菌浸泡在40,60和80℃的TiO2NANO-颗粒的溶液中,纳米和纳米然后将其暴露于盐度应激,即200μmN培养系统上的盐度应力。结果表明,60℃下PPM TiO2Nano引发的治疗效果呈盐度胁迫下玉米幼苗的发芽率和生长。实验用砂作为生长培养基进行60μppmtiO2。结果表明,萌发百分比,萌发能量,幼苗活力指数,根部和芽的长度,幼苗的新鲜和干重,钾离子(K +)浓度,相对含水量(RWC),总酚类和脯氨酸和含量,超氧化物歧化酶( SOD),过氧化氢酶(CAT)和苯丙氨酸氨酶(PAL)活性显着提高,平均出苗时间(MET),钠离子(Na +)浓度,膜电解质泄漏(MEL)和丙二醛(MDA)含量通过TiO 2降低为与盐度胁迫下的控制相比。Conclusionso,用TiO2分析玉米盐度损伤,可以是减轻肥大胁迫对玉米盐度胁迫的有害影响的重要替代策略。

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