首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Improving the postharvest performance of cut spray 'Prince' carnations by vase treatments with nano-silver and sucrose
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Improving the postharvest performance of cut spray 'Prince' carnations by vase treatments with nano-silver and sucrose

机译:用纳米银和蔗糖改善Cut Past'Prince'康乃馨切青藻对康乃馨的开采性能

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摘要

The postharvest performance of cut spray-type carnations (Dianthus caryophyllus L.) is often limited by the opening, longevity, and coloration of individual florets, and is apparently related to water stress and sugar deficiency. In this study, we found that, compared with deionised water-treated controls, the vase life of cut spray 'Prince' carnations was extended by 2.1-4.6 days when held in vase solutions containing1-5 mg L-1 nano-silver (NS). Moreover, combination treatments with 5 mg L-1 NS and 2%, 3%, or 4% sucrose consistently further prolonged the vase life, prominently promoted floret opening, and increased the bright pink coloration of petals, thereby markedly enhancing quality performance. Overall, the 5 mg L-1 NS plus 3% sucrose treatment provided the longest vase life extension (6.6 days) compared with the control, and significantly increased the anthocyanin content in floret petals. Besides, we also showed that the treatment with 5 mg L-1 NS alone or 5 mg L-1 NS plus 3% sucrose significantly enhanced their vase solution uptake and relative fresh weight. Further, scanning electron microscopy observations revealed that the NS vase treatments evidently alleviated vascular occlusion by inhibiting bacterial colonisation and biofilm formation on their stem-end cut surfaces and in the xylem vessels.
机译:切割喷雾型康乃馨(Dianthus Caryophyllus L.)的采后性能通常受到个体小花的开口,寿命和着色的限制,并且与水胁迫和糖缺乏显然有关。在这项研究中,我们发现,与去离子水处理对照相比,在含有1-5mg L-1纳米银(ns )。此外,含有5mg L-1ns和2%,3%或4%蔗糖的组合处理始终如一地进一步延长了花瓶寿命,显着提高了花瓣的亮粉色着色,从而显着提高了质量性能。总的来说,5毫克L-1 NS加3%蔗糖处理提供了与对照相比最长的花瓶寿命延伸(6.6天),并显着增加了小花花瓣中的花青素含量。此外,我们还表明,用5mg L-1NS的处理或5mg L-1NS加3%蔗糖的处理显着增强了它们的瓶子溶液摄取和相对鲜重的重量。此外,扫描电子显微镜观察显示NS瓶子治疗通过抑制细菌定植和在其茎端切割表面和木质血管中的形成,显然通过抑制细菌定植和生物膜形成明显地缓解了血管闭塞。

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