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Discovery of novel xylosides in co-culture of basidiomycetes Trametes versicolor and Ganoderma applanatum by integrated metabolomics and bioinformatics

机译:通过整合代谢组学和生物信息学在杂色担子菌和云芝灵芝共培养物中发现新型木糖苷

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摘要

Transcriptomic analysis of cultured fungi suggests that many genes for secondary metabolite synthesis are presumably silent under standard laboratory condition. In order to investigate the expression of silent genes in symbiotic systems, 136 fungi-fungi symbiotic systems were built up by co-culturing seventeen basidiomycetes, among which the co-culture of Trametes versicolor and Ganoderma applanatum demonstrated the strongest coloration of confrontation zones. Metabolomics study of this co-culture discovered that sixty-two features were either newly synthesized or highly produced in the co-culture compared with individual cultures. Molecular network analysis highlighted a subnetwork including two novel xylosides (compounds >2 and >3). Compound >2 was further identified as N-(4-methoxyphenyl)formamide 2-O-β-D-xyloside and was revealed to have the potential to enhance the cell viability of human immortalized bronchial epithelial cell line of Beas-2B. Moreover, bioinformatics and transcriptional analysis of T. versicolor revealed a potential candidate gene (GI: 636605689) encoding xylosyltransferases for xylosylation. Additionally, 3-phenyllactic acid and orsellinic acid were detected for the first time in G. applanatum, which may be ascribed to response against T.versicolor stress. In general, the described co-culture platform provides a powerful tool to discover novel metabolites and help gain insights into the mechanism of silent gene activation in fungal defense.
机译:培养真菌的转录组分析表明,在标准实验室条件下,许多次级代谢产物合成基因可能是沉默的。为了研究沉默基因在共生系统中的表达,共培养了十七个担子菌,共构建了136个真菌-真菌共生系统,其中Trametes versicolor和Ganoderma applanatum的共培养表现出最强的对抗区着色。对这种共培养物的代谢组学研究发现,与单个培养物相比,共培养物中有62种特征是新合成的或高产的。分子网络分析突出显示了一个包含两个新型木糖苷(化合物> 2 和> 3 )的子网。化合物> 2 被进一步鉴定为N-(4-甲氧基苯基)甲酰胺2-O-β-D-木糖苷,并被发现具有增强人类永生化支气管上皮细胞系的能力。 Beas-2B。此外,云芝的生物信息学和转录分析揭示了潜在的候选基因(GI:636605689),其编码用于木糖基化的木糖基转移酶。此外,首次在苹果茶中检测到3-苯基乳酸和奥数酸,这可能归因于对T.versicolor胁迫的响应。通常,所描述的共培养平台提供了一个强大的工具,可以发现新颖的代谢产物,并有助于深入了解真菌防御中沉默基因激活的机制。

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