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首页> 外文期刊>Mycology >Phylogenetic and chemical diversity of fungal endophytes isolated from Silybum marianum (L) Gaertn. (milk thistle)
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Phylogenetic and chemical diversity of fungal endophytes isolated from Silybum marianum (L) Gaertn. (milk thistle)

机译:从水飞蓟(L)Gaertn分离的真菌内生菌的系统发生和化学多样性。 (水飞蓟)

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Use of the herb milk thistle (Silybum marianum ) is widespread, and its chemistry has been studied for over 50?years. However, milk thistle endophytes have not been studied previously for their fungal and chemical diversity. We examined the fungal endophytes inhabiting this medicinal herb to determine: (1) species composition and phylogenetic diversity of fungal endophytes; (2) chemical diversity of secondary metabolites produced by these organisms; and (3) cytotoxicity of the pure compounds against the human prostate carcinoma (PC-3) cell line. Forty-one fungal isolates were identified from milk thistle comprising 25 operational taxonomic units based on BLAST search via GenBank using published authentic sequences from nuclear ribosomal internal transcribed spacer sequence data. Maximum likelihood analyses of partial 28S rRNA gene showed that these endophytes had phylogenetic affinities to four major classes of Ascomycota, the Dothideomycetes, Sordariomycetes, Eurotiomycetes, and Leotiomycetes. Chemical studies of solid–substrate fermentation cultures led to the isolation of four new natural products. In addition, 58 known secondary metabolites, representing diverse biosynthetic classes, were isolated and characterized using a suite of nuclear magnetic resonance and mass spectrometry techniques. Selected pure compounds were tested against the PC-3 cell line, where six compounds displayed cytotoxicity.
机译:香草水飞蓟(Silybum marianum)的使用非常广泛,其化学作用已研究了50多年。但是,乳蓟草内生菌的真菌和化学多样性先前尚未进行过研究。我们检查了居住在该药草上的真菌内生菌,以确定:(1)真菌内生菌的种类组成和系统发育多样性; (2)这些生物体产生的次生代谢产物的化学多样性; (3)纯化合物对人前列腺癌(PC-3)细胞系的细胞毒性。基于GenBank中的BLAST搜索,使用已发布的来自核糖体内部转录间隔区序列数据的真实序列,从牛奶蓟中鉴定出41个真菌分离物,其中包含25个操作生物分类单位。对部分28S rRNA基因的最大似然分析表明,这些内生菌对子囊菌的四个主要类别具有亲和力,即梭菌属,伞形霉菌,Eurotiomycetes和Leotiomycetes。固体基质发酵培养物的化学研究导致分离出四种新的天然产物。此外,使用一套核磁共振和质谱技术分离并表征了代表各种生物合成类别的58种已知的次级代谢产物。针对PC-3细胞系测试了选定的纯化合物,其中六种化合物显示出细胞毒性。

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