{"title":"纳米二氧化钛对水稻生理和产量的增强作用","authors":"Rutairat Phothi, C. Theerakarunwong","doi":"10.21475/ajcs.20.14.07.p2452","DOIUrl":null,"url":null,"abstract":"Engineered nanoparticles (ENPs) are reported as potentially response to rice physiological and production. The research aimed to investigate the effects of suspended nano-titanium dioxide (sn-TiO2), which is non-toxic to ecology and on the physiology and yield of Thai rice. Selected rice cultivars of RD41 were soaked and sprayed with three difference concentrations of sn-TiO2 (T0.01, T0.02, T0.03 and C) through growing period. Tiller number per plants, stem height and leaf chlorophyll of rice RD41 cultivars were analyzed at tillering (40 days), flowering (70 days), and final harvesting (100 days), whereas the biomass and yield were evaluated at final harvesting (100 days). The results showed the concentration of T0.03 had highest effects on rice RD41 for all studies, which showed non-significance of differences at p <0.05 compared to T0.02. Application of T0.01, T0.02 and T0.03 treatments increased total biomass 33.69, 42.66 and 47.91 g plant -1, respectively, compared to control (30.49). Application of T0.02 enhanced the plant growth and caused increases in the yield of rice, which impacted food availability. According to the results obtained, the function of sn-TiO2 played a positive role in many aspects. For instance, sn-TiO2 could increase light harvesting to activate the photosynthesis rate of rice RD41. Besides, nitrogen metabolism was improved by sn-TiO2 and stimulated protein and pigments content. Moreover, our observed decreasing in injury indices compared to the control group, which caused improvement in cell enlargement, cell elongation and plant growth. Atomic absorption spectrometric result ensured that there is no unforeseen Ti contamination in all part of rice. These findings are important supplementary factors to the application of sn-TiO2 for the crop yield and quality with a proper concentration for their benefits potential.","PeriodicalId":292935,"journal":{"name":"JULY 2020","volume":"70 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2020-07-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"5","resultStr":"{\"title\":\"Enhancement of rice (Oryza sativa L.) physiological and yield by application of nano-titanium dioxide\",\"authors\":\"Rutairat Phothi, C. Theerakarunwong\",\"doi\":\"10.21475/ajcs.20.14.07.p2452\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Engineered nanoparticles (ENPs) are reported as potentially response to rice physiological and production. The research aimed to investigate the effects of suspended nano-titanium dioxide (sn-TiO2), which is non-toxic to ecology and on the physiology and yield of Thai rice. Selected rice cultivars of RD41 were soaked and sprayed with three difference concentrations of sn-TiO2 (T0.01, T0.02, T0.03 and C) through growing period. Tiller number per plants, stem height and leaf chlorophyll of rice RD41 cultivars were analyzed at tillering (40 days), flowering (70 days), and final harvesting (100 days), whereas the biomass and yield were evaluated at final harvesting (100 days). The results showed the concentration of T0.03 had highest effects on rice RD41 for all studies, which showed non-significance of differences at p <0.05 compared to T0.02. Application of T0.01, T0.02 and T0.03 treatments increased total biomass 33.69, 42.66 and 47.91 g plant -1, respectively, compared to control (30.49). Application of T0.02 enhanced the plant growth and caused increases in the yield of rice, which impacted food availability. According to the results obtained, the function of sn-TiO2 played a positive role in many aspects. For instance, sn-TiO2 could increase light harvesting to activate the photosynthesis rate of rice RD41. Besides, nitrogen metabolism was improved by sn-TiO2 and stimulated protein and pigments content. Moreover, our observed decreasing in injury indices compared to the control group, which caused improvement in cell enlargement, cell elongation and plant growth. Atomic absorption spectrometric result ensured that there is no unforeseen Ti contamination in all part of rice. 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引用次数: 5
摘要
据报道,工程纳米颗粒(ENPs)对水稻生理和生产具有潜在的响应作用。本研究旨在研究对生态无害的悬浮纳米二氧化钛(sn-TiO2)对泰国水稻生理和产量的影响。选用RD41水稻品种,在整个生育期分别浸泡和喷洒3种不同浓度的sn-TiO2 (T0.01、T0.02、T0.03和C)。在分蘖期(40 d)、开花期(70 d)和终采期(100 d)对RD41品种的单株分蘖数、茎高和叶片叶绿素进行了分析,并对终采期(100 d)的生物量和产量进行了评价。结果表明,T0.03浓度对水稻RD41的影响最大,但与T0.02浓度相比差异无统计学意义(p <0.05)。T0.01、T0.02和T0.03处理较对照(30.49)分别增加了总生物量33.69、42.66和47.91 g -1。T0.02的施用促进了植株生长,提高了水稻产量,影响了粮食有效性。根据得到的结果,sn-TiO2的功能在很多方面都起到了积极的作用。例如,sn-TiO2可以增加光收获,激活水稻RD41的光合速率。此外,sn-TiO2促进了氮代谢,刺激了蛋白质和色素含量。此外,与对照组相比,我们观察到损伤指标降低,这导致细胞增大,细胞伸长和植株生长改善。原子吸收光谱分析结果保证了大米各部分均无意外的钛污染。这些发现为sn-TiO2在作物产量和品质方面的应用提供了重要的补充因素,适当的浓度可以发挥其效益潜力。
Enhancement of rice (Oryza sativa L.) physiological and yield by application of nano-titanium dioxide
Engineered nanoparticles (ENPs) are reported as potentially response to rice physiological and production. The research aimed to investigate the effects of suspended nano-titanium dioxide (sn-TiO2), which is non-toxic to ecology and on the physiology and yield of Thai rice. Selected rice cultivars of RD41 were soaked and sprayed with three difference concentrations of sn-TiO2 (T0.01, T0.02, T0.03 and C) through growing period. Tiller number per plants, stem height and leaf chlorophyll of rice RD41 cultivars were analyzed at tillering (40 days), flowering (70 days), and final harvesting (100 days), whereas the biomass and yield were evaluated at final harvesting (100 days). The results showed the concentration of T0.03 had highest effects on rice RD41 for all studies, which showed non-significance of differences at p <0.05 compared to T0.02. Application of T0.01, T0.02 and T0.03 treatments increased total biomass 33.69, 42.66 and 47.91 g plant -1, respectively, compared to control (30.49). Application of T0.02 enhanced the plant growth and caused increases in the yield of rice, which impacted food availability. According to the results obtained, the function of sn-TiO2 played a positive role in many aspects. For instance, sn-TiO2 could increase light harvesting to activate the photosynthesis rate of rice RD41. Besides, nitrogen metabolism was improved by sn-TiO2 and stimulated protein and pigments content. Moreover, our observed decreasing in injury indices compared to the control group, which caused improvement in cell enlargement, cell elongation and plant growth. Atomic absorption spectrometric result ensured that there is no unforeseen Ti contamination in all part of rice. These findings are important supplementary factors to the application of sn-TiO2 for the crop yield and quality with a proper concentration for their benefits potential.