Khaled Rahaf, Mohamed Sara, Mohamed Amira, Khairy Aya, Elhariry Hesham, Bakry Ashraf, Elsenosy Neima K, Ebeed Naglaa, Salem Salem S, ElNoby Thanaa, Abu-Hussien Samah H
Biotechnology Program, New Programs Administration, Faculty of Agriculture, Ain Shams University, P.O. Box 68, Cairo, 11241, Egypt.
Department of Food Science, Faculty of Agriculture, Ain Shams University, P.O. Box 68, Cairo, 11241, Egypt.
AMB Express. 2025 Jan 27;15(1):14. doi: 10.1186/s13568-024-01806-0.
The increasing demand for natural alternatives to synthetic fungicides has prompted research into natural products like essential oils for postharvest disease management. This study investigated the antifungal, antioxidant, cytotoxic, and genotoxic potential of essential oil mixtures derived from oregano, rosemary, and mint against Penicillium digitatum, the predominant fungal pathogen causing green mold in orange fruits. P. digitatum NPAGRASU 2024 was isolated and identified as the most abundant species (60.2%) from infected oranges. It was deposited in GenBank with gene accession number PP930644 and deposited in MIRCEN culture collection as EMCC 358874. The antimicrobial activity of individual essential oils was evaluated, with oregano exhibiting the highest antifungal activity (inhibition zone diameter of 4.2 cm) against P. digitatum. L-optimal mixture design of response surface methodology (RSM) optimization revealed a highly effective mixture (Run 8) comprising 46.26% oregano and 53.74% rosemary, with a 99.65% actual growth reduction. The oregano oil demonstrated potent antioxidant activity, reaching approximately 75% DPPH radical scavenging at 3.125 mg/mL. Cytotoxicity assessment using the MTT assay showed morphological changes and reduced cell viability in liver cells treated with the PEOs mixture at 300 µg/mL. However, the optimized mixture did not induce significant chromosomal aberrations compared to the control, suggesting minimal genotoxic effects. In vivo, evaluation on oranges revealed 60% inhibition of green mold by the 1% (v/v) optimized mixture for 7 days. Histological analysis indicated low toxicity to the liver at the highest tested concentration (1% mixture). GC-MS analysis identified major compounds like cavarcol, caryophyllene, eucalyptol, phenols and levomenthol in oregano oil, contributing to its bioactivities. This study demonstrates the potential of optimized essential oil mixtures as effective and eco-friendly alternatives for postharvest disease control.
对合成杀菌剂天然替代品的需求不断增加,促使人们对诸如精油等天然产物进行研究,以用于采后病害管理。本研究调查了牛至、迷迭香和薄荷精油混合物对指状青霉的抗真菌、抗氧化、细胞毒性和遗传毒性潜力,指状青霉是导致橙子果实绿霉病的主要真菌病原体。从感染的橙子中分离出指状青霉NPAGRASU 2024,并鉴定为最主要的物种(占60.2%)。它已保存在GenBank中,基因登录号为PP930644,并作为EMCC 358874保存在微生物资源中心培养物保藏库中。评估了单一精油的抗菌活性,牛至对指状青霉表现出最高的抗真菌活性(抑菌圈直径为4.2厘米)。响应面法(RSM)优化的L-最优混合物设计显示,一种高效混合物(实验8)由46.26%的牛至和53.74%的迷迭香组成,实际生长减少率为99.65%。牛至油表现出强大的抗氧化活性,在3.125毫克/毫升时达到约75%的DPPH自由基清除率。使用MTT法进行的细胞毒性评估显示,用300微克/毫升的PEOs混合物处理的肝细胞出现形态变化并降低了细胞活力。然而,与对照组相比,优化后的混合物没有诱导明显的染色体畸变,表明遗传毒性作用最小。在体内,对橙子的评估显示,1%(v/v)的优化混合物对绿霉病有60%的抑制作用,持续7天。组织学分析表明,在最高测试浓度(1%混合物)下对肝脏的毒性较低。气相色谱-质谱分析确定了牛至油中的主要化合物,如卡瓦酚、石竹烯、桉叶油素、酚类和左旋薄荷醇,这些化合物有助于其生物活性。本研究证明了优化后的精油混合物作为采后病害控制的有效且环保替代品的潜力。