4.7 Article

Melatonin Preserves the Postharvest Quality of Cut Roses through Enhancing the Antioxidant System

期刊

PLANTS-BASEL
卷 11, 期 20, 页码 -

出版社

MDPI
DOI: 10.3390/plants11202713

关键词

antioxidant enzymes; glutathione; gene expression; lipid peroxidation; membrane stability; vase life

资金

  1. Taif University, Taif, Saudi Arabia [TURSP-2020/142]
  2. Guangxi Key Research and Development Project [GuiKe AB21238014]

向作者/读者索取更多资源

Exogenous melatonin (MT) treatment was found to extend the vase life of cut roses by maintaining relative water content and reducing stomatal aperture. In addition, MT treatment increased phenol content, enzyme activities, and radical scavenging capacity, while reducing H2O2 production and lipid peroxidation. This overall contributed to membrane stability maintenance and preservation of postharvest quality in cut flowers.
The vase life of cut rose is relatively short, therefore; preserving its postharvest quality via eco-friendly approaches is of particular economic importance. From the previous literature, despite melatonin (MT) plays diverse important roles in the postharvest quality maintenance, its impact on preserving the postharvest quality of cut flowers is really scarce. This research therefore was undertaken to find out the possibility of exogenous MT as an eco-friendly preservative to extend the vase life of cut roses. The flowering stems of Rosa hybrida cv. 'First Red' were pulsed in MT solutions at 0, 0.1, 0.2 and 0.3 mM for 30 min and then transferred to distilled water for evaluation. The vase life was significantly prolonged and relative water content was considerably maintained due to MT application compared to the control, more so with 0.2 mM concentration which nearly doubled the vase life (1.9-fold) higher than the control. SEM investigation showed that MT treatment reduced the stomatal aperture in lower epidermis which was widely opened in control flowers. MT treatment significantly increased the phenol content, glutathione (GSH) content and CAT, APX and GR enzyme activities compared to untreated flowers. Additionally, the radical scavenging capacity in MT-treated flowers was considerably higher than that of control and therefore MT treatment reduced H2O2 production and lipid peroxidation, which altogether reflected in membrane stability maintenance.

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