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探索狗牙根内生真菌:气相色谱-质谱联用分析及生物活性

Exploring endophytic fungi from Cynodon dactylon: GC-MS profiling and biological activity.

作者信息

Kamunkar Aishwarya K, Nischitha R

机构信息

National Fungal Culture Collection of India (NFCCI), Biodiversity and Palaeobiology-Fungi, MACS- Agharkar Research Institute, Gopal Ganesh Agharkar Road, Pune 411 004, Maharashtra, India; Department of Medical Biotechnology, D. Y. Patil International University, Akurdi, Pune 411035, Maharashtra, India.

National Fungal Culture Collection of India (NFCCI), Biodiversity and Palaeobiology-Fungi, MACS- Agharkar Research Institute, Gopal Ganesh Agharkar Road, Pune 411 004, Maharashtra, India.

出版信息

Fungal Genet Biol. 2025 Feb;176:103959. doi: 10.1016/j.fgb.2024.103959. Epub 2024 Dec 27.

Abstract

The rapid decline of significant plant species due to deforestation and slow regrowth has endangered many trees that are crucial for producing life-saving medications. This dual crisis of conserving plant biodiversity while meeting pharmaceutical demands necessitates innovative solutions. Endophytic fungi, naturally occurring symbionts within plants, present an eco-friendly and economically viable alternative. These fungi can produce a wide range of bioactive compounds, offering a sustainable source of pharmaceuticals. This study investigated endophytic fungi isolated from the inflorescence, leaf, and culm of Cynodon dactylon, a perennial medicinal grass. The research involved the isolation of endophytic fungi on potato dextrose agar (PDA) and water agar (WA), extracting secondary metabolites, and performing antimicrobial and antioxidant assays and gas chromatography-mass spectroscopy (GC-MS) profiling. A total of 21 endophytic fungi were isolated, with species of Alternaria, Aspergillus, and Cladosporium being predominant. These fungi were identified through morphological and molecular (internal transcribed sequences-ITS) characterization. Based on factors such as fungal dominance and specificity, five fungi (Aspergillus chevalieri, Aspergillus stellatus, Hypoxylon sp., and Xylaria apiculate) were selected and they exhibited significant activity against plant pathogens (Sclerotium rolfsii and Aspergillus niger) and radical scavenging properties in DPPH assays. GC-MS analysis revealed over twenty bioactive compounds in each fungal extract. These findings underscore the potential of endophytic fungi as sustainable sources of novel pharmaceuticals and effective biocontrol agents, offering a promising approach to address the current ecological and medicinal challenges.

摘要

由于森林砍伐和缓慢的再生速度,重要植物物种迅速减少,这危及了许多对生产救命药物至关重要的树木。在保护植物生物多样性和满足制药需求这一双重危机下,需要创新解决方案。内生真菌是植物体内自然存在的共生体,是一种生态友好且经济可行的替代方案。这些真菌能产生多种生物活性化合物,提供了可持续的药物来源。本研究调查了从多年生药用草本植物狗牙根的花序、叶片和茎中分离出的内生真菌。研究包括在马铃薯葡萄糖琼脂(PDA)和水琼脂(WA)上分离内生真菌、提取次生代谢产物、进行抗菌和抗氧化测定以及气相色谱 - 质谱(GC - MS)分析。共分离出21种内生真菌,其中链格孢属、曲霉属和枝孢属的物种占主导。通过形态学和分子(内转录间隔区 - ITS)特征鉴定这些真菌。基于真菌优势度和特异性等因素,选择了五种真菌(谢瓦曲霉、星状曲霉、炭团菌属和尖顶炭角菌),它们在DPPH测定中对植物病原体(齐整小核菌和黑曲霉)表现出显著活性以及自由基清除特性。GC - MS分析显示每种真菌提取物中有二十多种生物活性化合物。这些发现强调了内生真菌作为新型药物可持续来源和有效生物防治剂的潜力,为应对当前的生态和医学挑战提供了一种有前景的方法。

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