Ultrasonic Pretreatment Combined with Microwave-Assisted Hydrodistillation for Extraction of Essential Oil from Melaleuca bracteata ‘Revolution Gold’ Leaves Scales Induced by Cellulase-Inorganic Salt and Its Anti-Fungal Activity

Yan Huang, Xiaonan Zhang, Fajian Zeng, Jinmei Chang, Zhiwei Liu
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Abstract

In order to further develop the commercial use of Melaleuca bracteata (F. Muell), this report studied the extraction of essential oil from Melaleuca bracteata (F. Muell) leaves using ultrasonic pretreatment, cellulase-inorganic salt soaked and combined with microwave-assisted hydrodistillation. To optimize the primary contributing parameters, the Box–Behnken design (BBD) was applied. The optimum yield of essential oil was 9.61 mL/kg DW at a microwave power of 510.77 W, lithium chloride dose of 63.56 μmol, and microwave irradiation period of 46.97 min. The essential oil included a total of 41 compounds, and methyl eugenol (76.53%) and methyl cinnamate (12.62%) were the main compounds. The inhibitory impact was notable when the essential oil concentration was 1.6 mg/mL. Therefore, it has the potential to replace chemical pesticides. When the concentration of the essential oil solution was 1.6 mg/mL, the three pathogenic species of fungus (Pseudocercospora psidii, Colletotrichum eriobotryae, and Colletotrichum siamense) were greatly affected; at this dose, the fungus was unable to develop and its growth diameter was 0 mm. Additionally, the fungus’s inhibition rate reached 100%.
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超声波预处理结合微波辅助水蒸馏法提取纤维素酶-无机盐诱导的 Melaleuca bracteata 'Revolution Gold' 叶片鳞片中的精油及其抗真菌活性
为了进一步开发白千层(Melaleuca bracteata (F. Muell))的商业用途,本报告研究了采用超声波预处理、纤维素酶-无机盐浸泡并结合微波辅助水蒸馏法从白千层(Melaleuca bracteata (F. Muell))叶片中提取精油的方法。为了优化主要贡献参数,采用了箱-贝肯设计法(BBD)。在微波功率为 510.77 W、氯化锂剂量为 63.56 μmol、微波辐照时间为 46.97 分钟时,精油的最佳产量为 9.61 mL/kg DW。精油中共含有 41 种化合物,其中丁香酚甲酯(76.53%)和肉桂酸甲酯(12.62%)是主要化合物。当精油浓度为 1.6 毫克/毫升时,抑制作用明显。因此,它具有替代化学农药的潜力。当精油溶液的浓度为 1.6 毫克/毫升时,三种致病真菌(Pseudocercospora psidii、Colletotrichum eriobotryae 和 Colletotrichum siamense)受到很大影响;在此剂量下,真菌无法发育,其生长直径为 0 毫米。此外,真菌的抑制率达到 100%。
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