Ul Haq Aehsan, Lateef Lone Mohammad, Farooq Sumira, Parveen Shazia, Altaf Foziya, Tahir Inayatullah, Ingo Hefft Daniel, Ahmad Ajaz, Ahmad Parvaiz
Plant Physiology and Biochemistry Research Laboratory, Department of Botany, University of Kashmir, Srinagar, Jammu and Kashmir 190006, India.
University Centre Reaseheath, Food and Agricultural Sciences, Reaseheath College, Nantwich CW5 6DF, UK.
Funct Plant Biol. 2023 Feb;50(2):97-107. doi: 10.1071/FP21241.
Nitric oxide releasing compound sodium nitroprusside (SNP) is regarded as novel chemical to beat the daunting challenges of postharvest losses in cut flowers. In the recent years, it has yielded propitious results as postharvest vase preservative for cut flowers. Our study explicates the efficacy of SNP in mitigating postharvest senescence in Consolida ajacis (L.) Schur cut spikes. The freshly excised C. ajacis spikes were subjected to different SNP treatments viz , 20μM, 40μM, 60μM and 80μM. The control spikes were held in distilled water. The spikes held in test solutions showed a marked improvement in vase life and flower quality. Our results indicate a profound surge in sugars, phenols and soluble proteins in SNP-treated spikes over control. Moreover, the SNP treatments improved membrane stability as signposted by decreased lipoxygenase activity (LOX). The SNP treatments also upregulated different antioxidant enzymes viz , ascorbate peroxidase (APX), catalase (CAT) and superoxide dismutase (SOD). The current study recommends 40μM SNP as optimum concentration for preserving floral quality and extending display period of C. ajacis spikes. Together, these findings reveal that SNP at proper dosage can efficiently alleviate deteriorative postharvest changes by modulating physiological and biochemical mechanisms underlying senescence.
释放一氧化氮的化合物硝普钠(SNP)被视为应对切花采后损失这一艰巨挑战的新型化学品。近年来,它作为切花采后瓶插保鲜剂已取得了良好的效果。我们的研究阐述了SNP在减轻飞燕草切穗采后衰老方面的功效。将刚剪下的飞燕草穗进行不同浓度的SNP处理,即20μM、40μM、60μM和80μM,对照穗置于蒸馏水中。置于测试溶液中的穗在瓶插寿命和花朵品质方面有显著改善。我们的结果表明,与对照相比,经SNP处理的穗中糖、酚类和可溶性蛋白显著增加。此外,如脂氧合酶活性(LOX)降低所示,SNP处理提高了膜稳定性。SNP处理还上调了不同的抗氧化酶,即抗坏血酸过氧化物酶(APX)、过氧化氢酶(CAT)和超氧化物歧化酶(SOD)。当前研究推荐40μM SNP作为保持飞燕草穗花卉品质和延长展示期的最佳浓度。总之,这些发现表明,适当剂量的SNP可通过调节衰老背后的生理和生化机制有效缓解采后劣变。