首页> 外文期刊>Journal of Essential Oil Research >Effects of Post-Harvest Drying on the Essential Oil and Glandular Trichomes of Lippia scaberrima Sond.
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Effects of Post-Harvest Drying on the Essential Oil and Glandular Trichomes of Lippia scaberrima Sond.

机译:采后干燥对Lippia scaberrima Sond精油和腺毛的影响。

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Lippia scaberrima (Verbenaceae) is an aromatic, medicinal shrub which is indigenous to southern Africa. Quanti-tative and qualitative analyses of the essential oil were conducted using gas chromatographic techniques. The effects of post-harvest drying on trichome structure, as well as on essential oil yield and composition, were investigated. Limonene, carvone and 1,8-cineole were found to be the major components of the oil. Loss of mass, due to both water and volatile compounds, was determined on a daily basis during drying of the plant material. Using the results derived from these determinations, oil yields were adjusted to a fresh weight basis. This was done to compensate for increased yield resulting from increased loading of dried material. Oil yields were observed to increase by approxi-mately 42% (m/m) during the first four to six days after harvest, where after a significant decrease was observed. A short period (four to six days) of post-harvest drying is therefore beneficial to improving oil yields of L. scaberrima. Concentrations of 13 individual components were investigated and these results indicated that drying does affect the oil composition. This factor should be taken into account if consistent economic production of the oil is envisaged. It was found that extended periods of drying, once the plant has lost most of its moisture, leads to a rapid reduction in oil yield. Scanning electron microscopy (SEM) corroborated the changes observed in the oil yield, since the appear-ance of the trichomes remained unchanged during the first five post-harvest days, but signs of glandular evacuation became evident after 10 days of drying.
机译:Lippia scaberrima(马鞭草科)是一种芳香的药用灌木,生于南部非洲。使用气相色谱技术对香精油进行定量和定性分析。研究了收获后干燥对毛状体结构以及精油产量和组成的影响。发现柠檬烯,香芹酮和1,8-桉树脑是该油的主要成分。在植物材料干燥期间,每天测定由于水和挥发性化合物引起的质量损失。使用从这些测定得出的结果,将油产量调整到新的重量基准。这样做是为了补偿由于增加干燥材料的装载量而导致的产量增加。在收获后的前四到六天内,观察到油的产量增加了大约42%(m / m),在此之后,油的产量显着下降。因此,收获后干燥的一小段时间(四到六天)有利于提高金缕梅的油产量。研究了13种单独成分的浓度,这些结果表明干燥确实会影响油的成分。如果计划持续稳定地生产石油,则应考虑这一因素。人们发现,一旦植物失去了大部分水分,延长的干燥时间就会导致石油产量的迅速下降。扫描电子显微镜(SEM)证实了油产量的变化,因为在收获后的前5天毛线虫的外观保持不变,但干燥10天后腺体疏散的迹象变得明显。

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