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Pruning System and Foliar Application of MgSO4 Alter Yield and Secondary Metabolite Profile of Rosa damascena under Rainfed Acidic Conditions

机译:雨养酸性条件下蔷薇的修剪系统和叶面施用MgSO4改变产量和次生代谢产物特征

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摘要

Damask rose (Rosa damascena Mill.) is one of the most high-value essential oil-bearing plants in the world. However, the flower yield and quality of essential oil of R. damascena are largely influenced by the pruning practices and balanced supply of plant nutrition. The objective of this study was to test the hypothesis whether the pruning system and foliar fertilization of MgSO4 would influence the flower yield, growth and secondary metabolites profile of R. damascena. A field experiment of 10 treatment combinations comprising two pruning systems (complete and partial) and five levels of MgSO4 (water spray, MgSO4 @ 5.0g L-1, 10.0g L-1,15.0g L-1, and 20.0g L-1) was conducted. The experiment was conducted in randomized block design with factorial arrangement. Overall, the flower yield ranged from 503.66 to 1114.47 g bush-1, while oil content varied from 0.039 to 0.046% of the fresh flower. Irrespective of foliar spray, partial pruning produced significantly (P ≤ 0.05) higher flower yield (893.02 and 503.66 g bush-1) compared with complete pruning system in both the years. Regardless of pruning system, the foliar application of MgSO4 @ 15.0g L-1 registered about 26–38% higher flower yield compared with water spray control. The major constituents of essential oil were citronellol (19.75–48.88%), E-geraniol (9.63–29.6%), Z-citral (0.07–5.97%), nonadecane (6.76–22.32%), and heneicosane (2.87–10.21%). The principal component analysis revealed that the major hydrocarbons such as nonadecene, nonadecane, and heptadecane are positively and highly correlated with each others. The results suggest that higher yield and quality of R. damascena can be achieved through partial pruning system in combination with foliar application MgSO4 under rainfed acidic conditions.
机译:锦缎玫瑰(Rosa damascena Mill。)是世界上最有价值的精油植物之一。然而,R。damascena的花朵产量和精油质量在很大程度上受到修剪方式和植物营养均衡供应的影响。这项研究的目的是检验以下假设:MgSO4的修剪系统和叶面施肥是否会影响大马士革的花产量,生长和次生代谢产物的分布。包含10个处理组合的田间试验,包括两个修剪系统(完全和部分修剪)和五种水平的MgSO4(喷水,MgSO4 @ 5.0g L -1 ,10.0g L -1 ,15.0 g L -1 和20.0g L -1 )。该实验在采用因子安排的随机区组设计中进行。总体而言,花卉产量为503.66至1114.47 g灌木 -1 ,而含油量为鲜花的0.039%至0.046%。与完全修剪系统相比,无论采用叶面喷雾,两年内部分修剪均显着提高了花产量(P≤0.05)(分别为893.02和503.66 g灌木 -1 )。不论修剪系统如何,叶面喷施MgSO4 @ 15.0g L -1 均比喷水高出约26–38%。香精油的主要成分是香茅醇(19.75–48.88%),香叶醇(9.63–29.6%),Z-柠檬醛(0.07–5.97%),十八烷(6.76–22.32%)和庚烷(2.87–10.21%) )。主成分分析表明,主要的烃类如壬二烯,壬二烷和庚烷彼此呈正相关且高度相关。结果表明,在雨养酸性条件下,通过部分修剪系统与叶面施用MgSO4的组合,可以达到较高的R. damascena产量和品质。

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