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Origanum syriacum Essential Oil Chemical Polymorphism According to Soil Type

机译:不同土壤类型的牛至精油化学多态性

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Background: Origanum syriacum L. is an aromatic plant growing wild in Lebanon. This species is highly used in Lebanese traditional medicine and is a staple food in Lebanese gastronomy. Due to the over-harvesting, this species has become a cultivated crop rather than being collected from the wild. This study aims to evaluate the chemical polymorphism according to soil type. Methods: Plant samples were cultivated in different soil types including manure, potting mix, professional agriculture mixture, vegetable compost, nursery soils, and natural agricultural soil inoculated with arbuscular mycorrhizal fungi. After 16 weeks of culture, fresh shoot biomass was measured. Root colonization rate was evaluated and foliar biomasses were used for essential oil (EO) extraction. EO yield was calculated and the identification of the main chemical compounds of EO samples was performed by gas chromatography (GC) and gas chromatography–mass spectrometry (GC/MS). Results: Our findings revealed that the soil type affects the O. syriacum chemotype. Indeed, the EO samples could be divided into two groups: thymol chemotype group including manure and vegetable compost soils and non-sterilized non-inoculated EO samples, and the thymol/carvacrol chemotype including potting mix, professional agriculture mixture, nursery mixture, sterilized non-inoculated, non-sterilized inoculated, and sterilized inoculated EO samples. These results showed that manure and vegetable compost soils promoted thymol synthesis, whereas potting mix, professional agriculture mixture, and nursery mixture soils were thymol/carvacrol chemotype. Moreover, mycorrhizal inoculation increased carvacrol and reduced thymol productions in comparison to non-inoculated conditions. Additionally, mycorrhizal inoculation showed significant enhancements in mycorrhizal rates and shoot biomass production with respect to the non-sterilized soil. Conclusions: These variations confirm the influence of the edaphic conditions on the chemical components biosynthesis pathways of oregano plants. The results of this investigation could be used for determining optimal soil type, leading to a good quality herb production.
机译:背景:Origanum syriacum L.是一种在黎巴嫩野生生长的芳香植物。该物种在黎巴嫩传统医学中使用率很高,是黎巴嫩美食中的主食。由于过度捕捞,该物种已成为一种栽培作物,而不是从野外采集。本研究旨在根据土壤类型评估化学多态性。方法:将植物样品种植在接种了丛枝菌根真菌的不同土壤类型上,包括肥料,盆栽混合物,专业农业混合物,蔬菜堆肥,苗圃土壤和天然农业土壤。培养16周后,测量新鲜的茎生物量。评价了根定殖率,并将叶生物量用于精油(EO)提取。计算出EO收率,并通过气相色谱(GC)和气相色谱-质谱(GC / MS)鉴定EO样品的主要化学成分。结果:我们的发现表明土壤类型会影响稻曲霉的化学型。实际上,EO样品可分为两组:百里酚化学型组,包括肥料和蔬菜堆肥土壤和未灭菌的未接种EO样品;百里香酚/香芹酚化学型,包括盆栽混合物,专业农业混合物,苗圃混合物,无菌非消毒样品。 -接种,未灭菌和已灭菌的EO样品。这些结果表明,粪肥和蔬菜堆肥土壤促进了百里香酚的合成,而盆栽混合料,专业农业混合料和苗圃混合料的土壤则是百里香酚/香芹酚的化学型。而且,与未接种的情况相比,菌根接种增加了香芹酚并且减少了百里酚的产生。另外,与未灭菌的土壤相比,菌根接种显示出菌根速率和芽生物量产生显着提高。结论:这些变化证实了牛的条件对牛至植物化学成分生物合成途径的影响。该调查的结果可用于确定最佳土壤类型,从而获得高质量的草本植物。

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