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首页> 外文期刊>Frontiers in Microbiology >Metabolomics Investigation of an Association of Induced Features and Corresponding Fungus during the Co-culture of Trametes versicolor and Ganoderma applanatum
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Metabolomics Investigation of an Association of Induced Features and Corresponding Fungus during the Co-culture of Trametes versicolor and Ganoderma applanatum

机译:在<斜视> Trametes versicolor 和<斜体> Ganoderma applanatum

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The co-culture of Trametes versicolor and Ganoderma applanatum is a model of intense basidiomycete interaction, which induces many newly synthesized or highly produced features. Currently, one of the major challenges is an identification of the origin of induced features during the co-culture. Herein, we report a~(13)C-dynamic labeling analysis used to determine an association of induced features and corresponding fungus even if the identities of metabolites were not available or almost nothing was known of biochemical aspects. After the co-culture of T. versicolor and G. applanatum for 10 days, the mycelium pellets of T. versicolor and G. applanatum were sterilely harvested and then mono-cultured in the liquid medium containing half fresh medium with~(13)C-labeled glucose as carbon source and half co-cultured supernatants collected on day 10.~(13)C-labeled metabolome analyzed by LC-MS revealed that 31 induced features including 3-phenyllactic acid and orsellinic acid were isotopically labeled in the mono-culture after the co-culture stimulation. Twenty features were derived from T. versicolor , 6 from G. applanatum , and 5 features were synthesized by both T. versicolor and G. applanatum .~(13)C-labeling further suggested that 12 features such as previously identified novel xyloside [N-(4-methoxyphenyl)formamide 2-O-beta-D-xyloside] were likely induced through the direct physical interaction of mycelia. Use of molecular network analysis combined with~(13)C-labeling provided an insight into the link between the generation of structural analogs and producing fungus. Compound 1 with m/z 309.0757, increased 15.4-fold in the co-culture and observed~(13)C incorporation in the mono-culture of both T. versicolor and G. applanatum , was purified and identified as a phenyl polyketide, 2,5,6-trihydroxy-4, 6-diphenylcyclohex-4-ene-1,3-dione. The biological activity study indicated that this compound has a potential to inhibit cell viability of leukemic cell line U937. The current work sets an important basis for further investigations including novel metabolites discovery and biosynthetic capacity improvement.
机译:Trametes versicolor和Ganoderma Applanatum的共同培养是一种强烈的底漆互动模型,它诱导许多新合成或高度产生的特征。目前,其中一个主要挑战是在共同文化期间识别诱导特征的起源。在此,我们报告了用于确定诱导特征和相应真菌的结合的〜(13)C-动态标记分析,即使代谢物的身份不可用或几乎没有人已知生化方面。在T. Versicolor和G. applanatum的共同培养10天后,菌丝体颗粒的菌丝体和G. applanatum的菌丝粒子被收获,然后在含有半新鲜培养基的液体培养基中用〜(13)c培养 - 标记的葡萄糖作为碳源和第10天收集的一半共培养上清液。通过LC-MS分析的C标记的代谢物显示,31种诱导特征在单声道上标记了31种诱导的特征,包括3-苯基酸和甲硅酸的特征共同培养刺激后的培养。来自G. applanatum的6种,来自G. applanatum的6个特征,通过T. Versicolor和G. applanatum合成了5个特征。〜(13)C标记进一步表明12个特征如先前鉴定的新型木糖苷e[n - (4-甲氧基苯基)甲酰胺2-O-Beta-D-木糖苷]可能通过菌丝体的直接物理相互作用诱导。使用分子网络分析与〜(13)C标记相结合,提供了对结构类似物的产生和生产真菌之间的联系的洞察。具有M / Z 309.0757的化合物1在共培养中增加了15.4倍,观察到〜(13)C掺入T. Versicolor和G. applanatum的单培养物中,纯化并鉴定为苯基聚酮,2 ,5,6-三羟基-4,6-二苯基环己烯-4-ENE-1,3-二酮。生物活性研究表明,该化合物具有抑制白血病细胞系U937的细胞活力的潜力。目前的工作为进一步调查设定了一个重要的基础,包括新的代谢物发现和生物合成能力改进。

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