関連する実験動画
Updated: Jan 8, 2026

Monitoring Plant Hormones During Stress Responses
Published on: June 15, 2009
園芸作物におけるセレン植物栄養強化:ストレス耐性と栄養補助食品の強化
Yuxi Shangguan1, Jin Zhu1, Jianhui Ye1
1College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.
Abstract:
As a bridge between human health and plant nutrition, Selenium (Se) phytofortification represents a promising strategy for achieving a safe and effective dietary Se supplementation. Due to chemical similarities, Se absorption, transformation, and storage in crops primarily follow the sulfur metabolic pathway. Se enhances horticultural crop resilience against abiotic and biotic stresses by: (i) boosting antioxidant capacity, (ii) inducing hormonal cascades, (iii) promoting the accumulation of key metabolites (e.g. amino acids, flavonoids), (iv) strengthening cellular functions, and (v) harnessing plant-microbiome interactions. In horticultural crops, most Se exists in organic forms, such as selenoamino acids, selenoproteins, selenium-polysaccharides, and selenium-polyphenols, which contribute to unique quality traits. Additionally, Se regulates the synthesis of core nutrients, including amino acids, flavonoids, phenolic compounds, soluble sugars, mineral elements, alkaloids, and volatile compounds. It also extends postharvest shelf life by delaying senescence and deterioration. Current phytofortification strategies focus on enhancing bioavailable Se in edible parts through agronomic interventions and plant breeding. Artificial Se fertilization is the most common agronomic approach, classified by the application method (soil fertilization, foliar spraying, hydroponic supplementation, and seed soaking) and fertilizer type (inorganic, organic, nano-Se, and biosynthesized fertilizers). Optimizing plant species, fertilization methods, dosage, timing, and elemental synergies maximize phytofortification efficiency.
さらに関連する動画
関連する概念動画
Responses to Salt Stress
Key Elements for Plant Nutrition
Plant Hormones
Sulfur Assimilation
Responses to Heat and Cold Stress
Plant Breeding and Biotechnology

