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从烟曲霉中生物勘探生物活性代谢产物:鉴定、培养优化、光谱分析以及抗真菌和抗氧化潜力评估

Bioprospecting bioactive metabolites from Aspergillus fumigatus: identification, culture optimization, spectroscopic profiling, and evaluation of antifungal and antioxidant potential.

作者信息

Samantaray Debajani, Gupta Nibha

机构信息

Plant Pathology and Microbiology Division, Regional Plant Resource Centre, Bhubaneswar, 751015, Odisha, India.

出版信息

Braz J Microbiol. 2025 Jul 1. doi: 10.1007/s42770-025-01722-w.

Abstract

Fungi are responsible for many infectious diseases, and the transmission continues. Despite the availability of many drugs, the severity and the frequency have been increasing for years. In light of this tragic scenario, there is a requirement to unfold bioactive molecules from herbal plants. Thus our research was pushed forward to isolate, recognize, and assess the bioactivites of fungal endophytes from Terminalia catappa. Finally, the isolated endophytic fungi were identified as Aspergillus fumigatus through ITS gene sequencing and selected for further study on the influence of culture conditions and nutritional factors on the growth inhibition of Fusarium spp., the production of phytochemicals, and antioxidant properties. The highest biological activity was seen in the 6-day-old Aspergillus fumigatus culture, and maltose-potassium nitrate is the chosen C and N source. The extract of the fungus has been obtained from the mass cultivation in selective media, partially purified through chromatography, and examined for antifungal properties against a diversity of pathogenic microorganisms. The results showed a noticeable antimicrobial exertion against Fusarium proliferatum, Fusarium fujikuroi, & Fusarium oxysporum. Furthermore, we have tested the potential of antioxidant activity and the phytochemical profiling of the Aspergillus fumigatus extracts using various methods. N-butanolic extract of selected fungi showed prominent bioactivity against F. fujikuroi, and the minimum inhibitory concentration was evaluated. The chemical profiling of the fungus extract was recognized via GC-MS and the structural characterization through FT-IR which indicates the presence of approximately 6 antifungal compounds with different functional groups.

摘要

真菌是许多传染病的病原体,且传播仍在继续。尽管有多种药物可用,但这些疾病的严重程度和发病频率多年来一直在上升。鉴于这种悲惨的情况,需要从草药植物中发掘生物活性分子。因此,我们的研究向前推进,以分离、识别和评估来自榄仁树的真菌内生菌的生物活性。最后,通过ITS基因测序将分离出的内生真菌鉴定为烟曲霉,并选择其进一步研究培养条件和营养因素对镰刀菌生长抑制、植物化学物质产生以及抗氧化特性的影响。在6日龄的烟曲霉培养物中观察到最高的生物活性,麦芽糖-硝酸钾是选定的碳源和氮源。该真菌的提取物已从选择性培养基中的大规模培养物中获得,通过色谱法进行部分纯化,并检测其对多种致病微生物的抗真菌特性。结果显示对层出镰刀菌、藤仓镰刀菌和尖孢镰刀菌有显著的抗菌作用。此外,我们使用各种方法测试了烟曲霉提取物的抗氧化活性潜力和植物化学图谱。所选真菌的正丁醇提取物对藤仓镰刀菌显示出显著的生物活性,并评估了最小抑菌浓度。通过气相色谱-质谱联用仪(GC-MS)对真菌提取物进行化学图谱分析,并通过傅里叶变换红外光谱仪(FT-IR)进行结构表征,结果表明存在约6种具有不同官能团的抗真菌化合物。

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