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Potato response to silicone compounds (micro and nanoparticles) and potassium as affected by salinity stress

机译:对硅氧烷化合物(微型和纳米颗粒)和钾受盐度应力影响的土豆响应

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Salinity of irrigation water is an important limitation factor in crop production such as potato worldwide. Foliar application of anti-stress compounds containing mineral nutrients is one of the possible solutions for salinity mitigation. In this field experiment the effects of silicone compounds on potato (cv. Agria) performance was studied as a split plot based on randomised complete block design with three replications at Ferdowsi University of Mashhad, Iran, during 2016 cropping season. Treatments included irrigation salinity [0.3 (non-stress), 5, 8 and 12 dS.m-1] and foliar application of potassium sulphate (1000 ppm), sodium silicate nanoparticles (400 ppm) and silica (1000 ppm). Results indicated that salinity decreased transpiration rate, stomatal conductance, quantum yield of PSII, membrane stability index, carotenoids, tuber number per plant and tuber yield while it improved water use efficiency and tuber dry matter percentage. Foliar application of anti-stress compounds positively affected quantum yield of PSII, carotenoids content, DPPH radical scavenging activity, tuber number per plant, tuber yield and tuber dry matter percentage. Although, application of all compounds improved most biochemical and photosynthetic traits, but ameliorative effect of the two silicon compounds, especially sodium silicate nanoparticles was more evident. It seems that silicon application could be an effective strategy in reducing salinity effects and its efficiency will be increased when is used as nanoparticles.
机译:灌溉水的盐度是在全球马铃薯等作物生产中的一个重要的限制因素。含有矿物质营养素的抗应激化合物的叶面施用是盐度缓解的可能溶液之一。在该领域,研究了基于随机完整块设计的分裂图,在伊朗费德沃大学的三次重复,研究了硅氧烷化合物对马铃薯(CV.AGRIA)性能的影响。处理包括灌溉盐度[0.3(非应力),5,8和12 ds.m-1]和叶酸钾(1000ppm),硅酸钠纳米颗粒(400ppm)和二氧化硅(1000ppm)的叶酸施加。结果表明,盐度降低了蒸发率下降,PSII,膜稳定性指数,类胡萝卜素,植物数,块茎产量和块茎产量的蒸发性降低,而植物利用效率和块茎干物质百分比提高。叶面施用抗应激化合物阳性影响量子产量,胡萝卜素含量,DPPH激进清除活性,每植物块茎数,块茎产量和块茎干物质百分比。虽然,所有化合物的应用改善了大多数生化和光合性状,但两种硅化合物的改善效果,特别是硅酸钠纳米颗粒更明显。似乎硅应用可能是减少盐度效应的有效策略,当用作纳米颗粒时,其效率将增加。

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