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Lasiodiplodia sp. ME4-2, an endophytic fungus from the floral parts of Viscum coloratum, produces indole-3-carboxylic acid and other aromatic metabolites

机译:Lasiodiplodia sp。 ME4-2是一种来自Viscum coloratum花部分的内生真菌,可产生吲哚-3-羧酸和其他芳香族代谢物

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Background Studies on endophytes, a relatively under-explored group of microorganisms, are currently popular amongst biologists and natural product researchers. A fungal strain (ME4-2) was isolated from flower samples of mistletoe (Viscum coloratum) during a screening program for endophytes. As limited information on floral endophytes is available, the aim of the present study is to characterise fungal endophytes using their secondary metabolites. Results ME4-2 grew well in both natural and basic synthetic media but produced no conidia. Sequence analysis of its internal transcribed spacer rDNA demonstrated that ME4-2 forms a distinct branch within the genus Lasiodiplodia and is closely related to L. pseudotheobromae. This floral endophyte was thus identified as Lasiodiplodia sp. based on its molecular biological characteristics. Five aromatic compounds, including cyclo-(Trp-Ala), indole-3-carboxylic acid (ICA), indole-3-carbaldehyde, mellein and 2-phenylethanol, were found in the culture. The structures of these compounds were determined using spectroscopic methods combined with gas chromatography. To the best of our knowledge, our work is the first to report isolation of these aromatic metabolites from a floral endophyte. Interestingly, ICA, a major secondary metabolite produced by ME4-2, seemed to be biosynthesized via an unusual pathway. Furthermore, our results indicate that the fungus ME4-2 is a potent producer of 2-phenylethanol, which is a common component of floral essential oils. Conclusions This study introduces a fungal strain producing several important aromatic metabolites with pharmaceutical or food applications and suggests that endophytic fungi isolated from plant flowers are promising natural sources of aromatic compounds.
机译:关于内生菌的背景研究是一种相对未开发的微生物,目前在生物学家和天然产物研究者中很流行。在对内生菌进行筛选的过程中,从槲寄生(Viscum coloratum)的花朵样品中分离出一种真菌菌株(ME4-2)。由于可获得关于花卉内生菌的有限信息,因此本研究的目的是利用其次生代谢物表征真菌内生菌。结果ME4-2在天然和碱性合成培养基中均生长良好,但未产生分生孢子。其内部转录的间隔区rDNA的序列分析表明,ME4-2形成了Lasiodiplodia属中的一个独特分支,并与拟假丝酵母有密切关系。该花内生植物因此被鉴定为Lasiodiplodia sp。根据其分子生物学特性。在培养物中发现了五种芳香族化合物,包括环-(Trp-Ala),吲哚-3-羧酸(ICA),吲哚-3-甲醛,蜜莱因和2-苯基乙醇。这些化合物的结构是使用光谱方法结合气相色谱法确定的。据我们所知,我们的工作是第一个报道从花卉内生菌中分离出这些芳香族代谢物的研究。有趣的是,ICA是ME4-2产生的主要次要代谢产物,似乎是通过不寻常的途径进行生物合成的。此外,我们的结果表明真菌ME4-2是2-苯基乙醇的有效生产者,而2-苯基乙醇是花卉香精油的常见成分。结论本研究介绍了一种在药物或食品应用中会产生几种重要芳香代谢物的真菌菌株,并表明从植物花中分离出的内生真菌是有希望的芳香化合物的天然来源。

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