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代谢组学和转录组学揭示了光照调控蝉花虫草中 beauvericin 合成的机制。

Metabolome and transcriptome unveil the mechanism of light on regulating beauvericin synthesis in Cordyceps chanhua.

机构信息

Anhui Provincial Key Laboratory for Microbial Control, Anhui Agricultural University, Hefei 230036, China.

Anhui Provincial Key Laboratory for Microbial Control, Anhui Agricultural University, Hefei 230036, China.

出版信息

Fungal Biol. 2024 Nov;128(7):2102-2112. doi: 10.1016/j.funbio.2024.08.005. Epub 2024 Aug 13.

Abstract

Cordyceps chanhua, an important cordycipitoid medical mushroom with wide use in Asia, has gained attention for its bioactive component beauvericin (BEA), which is of medicinal value as a drug lead, but also of food safety risk. Recent observations by our group revealed a significant decrease of BEA content in C. chanhua when exposed to light, but the underlying regulatory mechanisms remain elusive. In this study, a comprehensive approach combining metabolomics and transcriptomics was employed to investigate the effects of white light on the secondary metabolism of C. chanhua for elucidation of the influence of light on BEA biosynthesis in this fungus. The result showed that the genes and metabolites involved in the synthesis of D-hydroxyisovaleric acid, a precursor of BEA synthesis, were down-regulated under light exposure, while those associated with the synthesis of phenylalanine, another precursor of BEA synthesis, were up-regulated leading to elevated phenylalanine levels. It suggested that the suppressive effect of light on BEA synthesis in C. chanhua occurred primarily through the inhibition of D-hydroxyisovaleric acid synthesis, while the enhanced phenylalanine biosynthesis likely directed towards other metabolic pathway such as pigment synthesis. These results contributed to a better understanding on how light modulates the secondary metabolism of C. chanhua and provided valuable guidance for optimizing BEA production in cultivation practices.

摘要

蝉花,一种重要的虫草菌,在亚洲被广泛应用于医学领域,其生物活性成分 beauvericin(BEA)备受关注。BEA 具有药用价值,可作为药物先导化合物,但也存在食品安全风险。本研究组最近的观察结果表明,蝉花在暴露于光线下时,其 BEA 含量会显著降低,但潜在的调控机制仍不清楚。在这项研究中,我们采用了代谢组学和转录组学相结合的综合方法,研究了白光对蝉花次生代谢的影响,以阐明光对该真菌中 BEA 生物合成的影响。结果表明,在光照下,参与 D-羟基异戊酸(BEA 合成的前体)合成的基因和代谢物下调,而参与另一种 BEA 合成前体苯丙氨酸合成的基因和代谢物上调,导致苯丙氨酸水平升高。这表明光照对蝉花中 BEA 合成的抑制作用主要是通过抑制 D-羟基异戊酸的合成,而增强的苯丙氨酸生物合成可能指向其他代谢途径,如色素合成。这些结果有助于更好地理解光如何调节蝉花的次生代谢,并为优化其在培养实践中的 BEA 生产提供了有价值的指导。

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