菊花
苯丙素
采后
天麻
传统医学
化学
植物
生物
医学
有机化学
病理
酶
中医药
替代医学
生物合成
作者
Lihui Zhang,Dahui Liu,Qiyong Jiang,Qing Sun
标识
DOI:10.1016/j.fpsl.2025.101602
摘要
Gastrodia elata ( G. elata ), a traditional medicinal and edible plant, is susceptible to quality deterioration through enzymatic browning and microbial spoilage during storage. Carbon quantum dots (CQDs) derived from Chrysanthemum morifolium leaves (CQDs-Leaf) and stems (CQDs-Stem) combined with sodium alginate and konjac glucomannan as coatings were developed to enhance antioxidant and antifungal activity of coating, extending the shelf life of G. elata . The effects of CQDs on the physicochemical, structural, and functional activity of nanocomposite particles were evaluated. CQDs exhibited strong antioxidant capacity (IC 50 of CQDs-Leaf for ABTS and DPPH radicals were 50.90 μg/mL and 54.45 μg/mL, respectively), and inhibitory effects against dominant spoilage fungi of G. elata ( T. harzianum and F. redolens ). Moreover, CQDs-Leaf in coating with smaller particle size (100–113 nm) and hydroxyl-rich surfaces, reduced weight loss and disease incidence over 40-day storage by enhancing phenylpropanoid enzyme activities and suppressing lipid peroxidation. CQDs-Stem coating inhibited fungal growth via electrostatic adhesion, reducing decay of G. elata . CQDs coatings delayed rot onset by 10–15 days through regulating phenylpropanoid pathway. This study provides a sustainable strategy utilizing biomass-derived nanomaterials for bioactive food preservation, offering significant potential to reduce postharvest losses of perishable medicinal plants while promoting resource-efficient utilization of agricultural byproducts. • Chrysanthemum morifolium leaf and stem derived carbon quantum dots (CQDs) were prepared. • CQDs exhibited strong antioxidant activity, and against predominant pathogens of G. elata . • CQDs coating effectively helps fresh G. elata preservation. • CQDs coating regulated enzyme activities and antifungal compounds in phenylpropanoid pathway.
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