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Changes in the essential oil content and selected traits of sweet basil (Ocimum basilicum L.) as induced by foliar sprays of citric acid and salicylic acid

机译:叶酸柠檬酸和水杨酸喷雾诱导的甜罗勒(Ocimum basilicum L.)精油含量和某些性状的变化

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The experiment aimed to understand how these organic acids are going to affect on essential oil production in sweet basil. Three concentrations of each citric acid (CA; 0, 4, or 7 mM) and salicylic acid (SA; 0.5 or 1 mM) were applied. We added a standard control for comparison. The first spray was started at 2-leaf stage that was continued with four subsequent sprays in a 15 day interval. The plants were harvested 75 days after sowing the seeds, when they had produced seed. SA in 1 mM concentration caused the maximum of the total essential oil production along with the highest essential oil production by both leaves and stems with an increase of 32.8, 38.3, and 25.8% (respectively) when compared to control treatment. A synergism between 7 mM CA and 1 mM SA was observed in flowering parameters, which yielded the tallest inflorescence in CA(7)SA(1) along with the highest inflorescence count per plant and floret count in main inflorescence. Despite these quantitative improvements in flowering parameters, the thousand seed weight was still at its maximum in this combination, as well. The seed mucilage, on the other hand, increased significantly by foliar application of 0.5 mM SA. Seed oil content responded positively to applied CA, while SA effect was negligible. The results show the potential for using these compounds in manipulation of plant growth and metabolism toward the intended final use. (C) 2015 Elsevier B.V. All rights reserved.
机译:该实验旨在了解这些有机酸将如何影响甜罗勒中的精油生产。分别施加三种浓度的柠檬酸(CA; 0、4或7 mM)和水杨酸(SA; 0.5或1 mM)。我们添加了一个标准控件进行比较。第一次喷雾从两叶阶段开始,随后以15天为间隔进行四次喷雾。种子播种后75天,即种子产生后,收获它们。与对照处理相比,浓度为1 mM的SA导致最大的总精油产量以及最高的叶和茎产量,分别增加了32.8、38.3和25.8%。在开花参数中观察到7 mM CA和1 mM SA之间的协同作用,这导致CA(7)SA(1)中最高的花序以及每株植物的最高花序数和主要花序的小花数。尽管开花参数在数量上有所提高,但在这种组合中,千粒重仍然最大。另一方面,通过叶面施用0.5 mM SA可以显着增加种子的黏度。籽油含量对施用的CA呈正响应,而SA的影响可忽略不计。结果表明使用这些化合物在操纵植物生长和代谢中达到预期最终用途的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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