Talukdar Rajreepa, Padhi Srichandan, Rai Amit K, Masi Marco, Evidente Antonio, Jha Dhruva Kumar, Cimmino Alessio, Tayung Kumananda
Mycology and Plant Pathology Laboratory, Department of Botany, Gauhati University, Guwahati, India.
Institute of Bioresources and Sustainable Development, Regional Centre, Gangtok, India.
Front Bioeng Biotechnol. 2021 Jun 17;9:650247. doi: 10.3389/fbioe.2021.650247. eCollection 2021.
An endophytic fungus isolated from healthy leaf tissues of Thunb., an ethnomedicinal plant of North East India, showed a considerable amount of antimicrobial activity. The ethyl acetate extract of the fungal culture filtrates displayed promising antimicrobial activity against a panel of clinically significant pathogens including , , and . Bioassay guided purification of the organic extract using column and thin layer chromatography yielded a pure homogenous compound which was identified using spectroscopic methods (essentially by H NMR and MS) as tyrosol, a well-known phenylethanoid present in several natural sources. Besides, molecular docking studies against tyrosyl tRNA synthetases (TyrRS) of (PDB ID: 1JIL) and (PDB ID: 1VBM), and CYP45014α-lanosterol demethylase (CYP51) of (PDB ID: 5FSA) revealed tyrosol has a strong binding affinity with the enzyme active site residues. The fungus was identified as sp. and characterized by its genomic ITS rDNA and ITS2 sequences. Phylogenetic analyses showed clustering of our isolate with Species of are also reported to be plant pathogens. Therefore, to confirm the endophytic lifestyle of the isolate, ITS2 RNA secondary structure study was undertaken. The result indicated our isolate exhibited differences in the folding pattern as well as in motif structures when compared to those of pathogenic . . The findings indicated that endophytic fungi harboring could be explored as a potent source of antimicrobial agents.
从印度东北部一种民族药用植物——滨藜健康叶片组织中分离出的一种内生真菌,表现出相当强的抗菌活性。真菌培养滤液的乙酸乙酯提取物对包括金黄色葡萄球菌、大肠杆菌和白色念珠菌在内的一系列具有临床意义的病原体显示出有前景的抗菌活性。使用柱色谱和薄层色谱对有机提取物进行生物测定导向的纯化,得到了一种纯的同质化合物,通过光谱方法(主要是通过氢核磁共振和质谱)鉴定为酪醇,一种存在于多种天然来源中的著名苯乙醇类化合物。此外,针对金黄色葡萄球菌(PDB ID:1JIL)和大肠杆菌(PDB ID:1VBM)的酪氨酰tRNA合成酶(TyrRS)以及烟曲霉(PDB ID:5FSA)的CYP45014α-羊毛甾醇脱甲基酶(CYP51)的分子对接研究表明,酪醇与酶活性位点残基具有很强的结合亲和力。该真菌被鉴定为曲霉属物种,并通过其基因组ITS rDNA和ITS2序列进行了表征。系统发育分析表明,我们分离出的菌株与曲霉属物种聚类。据报道,曲霉属的一些物种也是植物病原体。因此,为了确认该分离株的内生生活方式,进行了ITS2 RNA二级结构研究。结果表明,与致病性曲霉属物种相比,我们的分离株在折叠模式以及基序结构上表现出差异。研究结果表明,携带酪醇的内生真菌有望作为抗菌剂的潜在来源进行开发。