石竹切花采后对樱桃介导银纳米粒子的响应

T. Le
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引用次数: 1

摘要

摘要:研究了以石竹叶提取物为原料合成纳米银的工艺及其对石竹切花花瓶寿命和花品质的影响。方法:利用紫外可见光谱(UV-Vis)、透射电镜(TEM)和扫描电镜(SEM)对桃李叶提取物进行生物合成,并对snp进行表征。通过插瓶寿命、相对鲜重、插瓶液吸收量、插花直径等指标,评价了康乃馨切花采后对生物合成snp的响应。结果:在60℃加热30 min,硝酸银4 mM, pH = 11,反应时间180 min的条件下,合成了最佳的snp。SNPs表现出抗菌活性,从而减缓了防腐剂溶液中细菌的生长。与对照相比,所有SNPs处理均提高了康乃馨插瓶寿命和切花质量。含有2%蔗糖的花瓶溶液增强了康乃馨切花的效果。结论:含25 ppm snp和2%蔗糖的保鲜液效果最佳。SNPs是一种很有前途的抗菌剂,应用于康乃馨切花防腐液中。
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Postharvest responses of Carnation cut flowers to Prunus cerasoides mediated silver nanoparticles
Introduction: The procedure to synthesize silver nanoparticles (SNPs) from Prunus cerasoides leaf extract and their effect on vase life and flower quality of cut carnation were investigated. Methods: SNPs were bio-synthesized from Prunus cerasoides leaf extract and characterized by using UV-Vis technique, TEM, and SEM images. The postharvest responses of carnation cut flowers to the biosynthesis SNPs were evaluated through vase life, relative fresh weight, vase solution uptake, flower diameter of cut carnation. Results: SNPs were synthesized under optimum conditions, including using the extract of leaf heating at 60 oC in 30 min, 4 mM of silver nitrate, pH of 11, and 180 min of reaction time. SNPs exhibited antimicrobial activity and then alleviated the bacterial development in the preservative solution. All treatments with SNPs had improved the vase life and quality of cut carnation compared to the control. A vase solution containing 2% sucrose enhanced the carnation cut flowers. Conclusions: The preservative solution containing 25 ppm SNPs and 2% sucrose showed the best effect. SNPs could be used as a promising antibacterial agent applied in the preservative solution for cut carnation flowers.
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