M. Barolo, M. Victoria Castelli, Silvia Noelí López
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引用次数: 0
摘要
Peperomia argyreia (Miq.) É. Morren(胡椒科)等独特植物的内生真菌生物多样性具有抗菌特性,可用于感染治疗。莫伦(胡椒科)等独特植物的内生真菌生物多样性具有抗菌特性,可用于感染治疗。从经适当处理的植物组织中获得真菌分离物,在固体培养基中培养,通过形态学鉴定,并使用 ITS 和 NL 引物进行分子生物学鉴定。真菌提取物的抗菌特性分析结合了微量稀释和生物自动分析法,并辅以自动薄层色谱法和 1H NMR 技术进行代谢分析。通过 rDNA 的 ITS 和/或 D1/D2 区域扩增,分离并鉴定了 31 种丝状真菌,分别为 Thermothielavioides、Trichoderma、Cyphellophora、Cladosporium、Arcopilus、Plectosphaerella;Chaetomium、Sporothrix、Alboefibula 和 Penicillium。Thermothielavioides 菌属对 ATCC 25923 金黄色葡萄球菌有抑制作用;此外,Penicillium westlingii P4 对 Ascochyta rabiei AR2 有抑制活性。通过对 P. westlingii P4 的 EtOAc 提取物(MIC = 62.5 μg/mL)进行生物活性指导分馏,可以纯化出作为主要抑制化合物的柠檬素(MIC = 62.5 μg/mL)。Peperomia argyreia 蕴藏着丰富多样的内生群落,能够产生生物活性分子。柠rinin,以及由 P. westlingii P4 生物合成的少量挥发性化合物,是抑制 A. rabiei AR2 的主要成分。
Antimicrobial Activity of Fungal Endophytes Associated with Peperomia argyreia (Piperaceae)
The endophytic fungal biodiversity of unique plants like Peperomia argyreia (Miq.) É. Morren (Piperaceae) has antimicrobial properties and can be employed for infection treatment. Fungal isolates were obtained from appropriately treated plant tissues cultured in solid media, characterized by morphology, and identified by molecular biology using ITS and NL primers. The antimicrobial properties of fungal extracts were analyzed by combining microdilution and bioautographic assays complemented with metabolic profiling by automated thin-layer chromatography and 1H NMR techniques. Thirty-one filamentous fungi were isolated and characterized by ITS and/or D1/D2 region amplification of rDNA, identified as Thermothielavioides, Trichoderma, Cyphellophora, Cladosporium, Arcopilus, Plectosphaerella; Chaetomium, Sporothrix, Alboefibula, and Penicillium. Thermothielavioides spp. inhibited Staphylococcus aureus ATCC 25923; moreover, Penicillium westlingii P4 showed inhibitory activity on Ascochyta rabiei AR2. The bioactivity-guided fractionation of the EtOAc extract (MIC = 62.5 μg/mL) of P. westlingii P4 allowed the purification of citrinin as the main inhibitory compound (MIC = 62.5 μg/mL). Peperomia argyreia harbors a rich and diverse endophytic community able to produce bioactive molecules. Citrinin, with a minor influence of volatile compounds biosynthesized by P. westlingii P4, was responsible for the inhibition of A. rabiei AR2.