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Selenium biofortification of wheat grain via foliar application and its effect on plant metabolism

机译:通过叶面应用的小麦籽粒生物杂化及其对植物新陈代谢的影响

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Selenium-biofortified wheat can substantially improve human nutrition, by reducing selenium deficiency in humans. In this study, field trials were conducted to investigate the biofortification of selenium (Se) in wheat and also to assess the influence of foliar application of Se (as sodium selenate) on the metabolism of carbohydrates, nitrogen contents, and on the antioxidant system of the plants. Selenium was applied via foliar sprays at the following doses: 0, 12, 21, 38, 68, and 120 g ha(-1). The dose of 120 g ha(-1) provided the highest concentrations of Se in the grains and the highest biomass production. The dose of 21 g ha(-1) of Se caused an increase of 48% in wheat productivity and 30% in biomass production, increasing also the net photosynthetic rate. Selenium positively affected also the activity of ascorbate peroxidase enzyme (APX) and carbohydrate contents. Moreover, treatments using 21 and 38 g ha(-1) of Se increased total nitrogen contents. Thus, wheat is indicated for agronomic biofortification with selenium since it accumulated Se in grains and was not negatively affected with respect to its vegetative growth. In addition, the contents of carbohydrates and total nitrogen as well as the activity of APX increased, favoring wheat production and biomass accumulation.
机译:通过减少人类的硒缺乏,可以显着改善人类营养,从而降低人类的硒。在该研究中,进行了现场试验以研究小麦的硒生物化(SE)的生物化,并评估SE(作为硒酸钠)对碳水化合物,氮含量和抗氧化系统的代谢的影响植物。通过以下剂量的叶面喷雾施加硒:0,12,21,38,68和120g ha(-1)。 120g ha(-1)的剂量提供了谷物中最高浓度的SE和最高的生物质生产。 21g HA(-1)的剂量在小麦生产率增加48%,生物量产生的30%,也增加了净光合速率。硒也积极影响抗坏血酸过氧化物酶(APX)和碳水化合物含量的活性。此外,使用21和38g Ha(-1)的治疗的Se的总氮含量增加。因此,对于硒的农艺生物侵蚀表示,其中粒子中的粒子累积并且对其植物生长没有负面影响而产生小麦。此外,碳水化合物和总氮的含量以及APX的活性增加,偏好小麦生产和生物质积累。

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