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Foliar Application of Selenium Nanoparticles on Celery Stimulates Several Nutrient Component Levels by Regulating the alpha-Linolenic Acid Pathway

机译:通过调节α-亚麻酸途径来筛选硒纳米粒子硒纳米粒子刺激几种营养成分水平

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Selenium nanoparticles (SeNPs) show potential tendency in improving the plant health and food quality. However, the mechanism underlying SeNPs' capability to enhance the biosynthesis of more nutrient components such as flavonoids in crops remains unclear. In this study, it is found that foliar application of SeNPs on celery significantly enhanced the total antioxidant capacity, total flavonoids, total phenols, and vitamin C levels of celery leaves by 46.7, 50.0, 21.4, and 26.7%, respectively. The SeNP application enhanced the biosynthesis of flavonoids, such as apigenin (58.4%), rutin (66.2%), p-coumaric acid (80.4%), ferulic acid (68.2%), luteolin (87.0%), and kaempferol (105.7%). The levels of nutrients such as arginine, tryptophan, and beta-carotenes also increased by 147.8, 91.5, and 61.4%, respectively. For other components, the alpha-linolenic acid (73.8%), 13(S)-hydroxy linolenic acid (65.0%), 12-oxophytodienoic acid (197.5%), and jasmonic acid (72.9%) levels increased in SeNP-treated celery leaves. In conclusion, it was proposed that the mechanism of SeNPs for stimulating nutrient component levels might enhance the antioxidant capacity by regulating the alpha-linolenic acid pathway, leading to greater biotransformations or accumulation of various nutrients in celery.
机译:硒纳米粒子(SENP)表现出改善植物健康和食品质量的潜在趋势。然而,剥皮能力的机制依赖于增强更多营养成分的生物合成,例如作物中的黄酮类化合物仍然尚不清楚。在这项研究中,发现SENP对芹菜的叶面施用显着提高了总抗氧化能力,总黄酮,总酚和维生素C水平的芹菜叶,分别为46.7,50.0,21.4和26.7%。森林申请增强了黄酮类化合物的生物合成,例如Apigenin(58.4%),芦丁(66.2%),p-香豆酸(80.4%),阿魏酸(68.2%),叶黄素(87.0%)和Kaempferol(105.7%)(105.7%)(105.7%) )。营养素如精氨酸,色氨酸和β-甲壳素的水平分别增加了147.8,91.5和61.4%。对于其他组分,森林处理的芹菜中,α-亚麻酸(73.8%),13(S) - 羟基亚烯酸(65.0%),12-苯甲二烯酸(197.5%)和茉莉酸(72.9%)水平增加树叶。总之,提出了刺激营养成分水平的森塞机制可以通过调节α-亚麻酸途径来提高抗氧化能力,导致芹菜中的各种营养成分的更大的生物转化或积累。

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