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底物和组织类型对猴头菇中猴头菌素产生及生物合成基因表达的影响。

Influences of substrate and tissue type on erinacine production and biosynthetic gene expression in Hericium erinaceus.

作者信息

Doar Elizabeth, Meyer Kyle W, Bair Zolton J, Nally Regan, McNalley Steve, Davis Renee, Beathard Chase

机构信息

Department of Research and Development, Fungi Perfecti, LLC, Olympia, WA, USA.

Independent Researcher, Shelton, WA, USA.

出版信息

Fungal Biol Biotechnol. 2025 Apr 3;12(1):4. doi: 10.1186/s40694-025-00194-9.

Abstract

BACKGROUND

Lion's mane (Hericium erinaceus) mycelium produces erinacines, a suite of cyathane diterpenoids with established neuroactivities. While H. erinaceus fruit body tissue has its own characteristic secondary metabolites, it generally does not produce detectable amounts of erinacines. Substrate composition influences the erinacine content of H. erinaceus mycelial cultures, similar to production of secondary metabolites in other fungi. This study explored the relationship between biosynthetic gene expression and erinacine content in H. erinaceus, comparing fruit body tissue to mycelial tissue cultured in two liquid media formulations.

RESULTS

In this study, we compared erinacine production in H. erinaceus fruit body to mycelial tissue cultivated in two liquid media formulations (Complex and Minimal) by quantifying mRNA transcript levels of the erinacine biosynthetic genes eriE, eriG, eriI, eriC, eriJ, eriB, and eriM (collectively, eri genes) alongside high performance liquid chromatography (HPLC) evaluation of erinacines Q, P, A, and C. We also predicted coding sequences for these seven eri genes. The Complex media preparation yielded mycelium with significantly higher erinacine C content, while the Minimal media yielded mycelium with greater erinacine Q content, suggesting an alteration of the biosynthetic pathway related to differences in substrate composition. Despite evident differences in erinacine concentrations, mycelial eri gene transcript levels did not differ significantly between the two liquid media preparations. When evaluated by gene expression or compound concentration, erinacine biosynthesis was substantially greater in mycelia compared to fruit body tissue in H. erinaceus.

CONCLUSIONS

Alongside the absence of detectable erinacines within fruit body samples, eri gene transcripts were consistently downregulated in the fruit body compared to the mycelium, particularly at early stages of the biosynthetic pathway. Substrate composition is a critical factor in production of erinacines by H. erinaceus, and large differences in mycelial erinacine content can occur without significant differences in expression of eri genes. Our data support the hypothesis that production of fungal secondary metabolites can be influenced by tissue type and substrate components, and that the expression of eri genes is enriched in the mycelium when compared to the fruit body.

摘要

背景

猴头菌(Hericium erinaceus)菌丝体可产生齿孔酸,这是一类具有既定神经活性的杯伞烷二萜类化合物。虽然猴头菌子实体组织有其自身特有的次生代谢产物,但通常不会产生可检测量的齿孔酸。底物组成会影响猴头菌菌丝体培养物中齿孔酸的含量,这与其他真菌中次生代谢产物的产生情况类似。本研究探讨了猴头菌中生物合成基因表达与齿孔酸含量之间的关系,将子实体组织与在两种液体培养基配方中培养的菌丝体组织进行了比较。

结果

在本研究中,我们通过对齿孔酸生物合成基因eriE、eriG、eriI、eriC、eriJ、eriB和eriM(统称为eri基因)的mRNA转录水平进行定量,同时结合对齿孔酸Q、P、A和C的高效液相色谱(HPLC)评估,比较了猴头菌子实体与在两种液体培养基配方(复合培养基和基本培养基)中培养的菌丝体组织中齿孔酸的产生情况。我们还预测了这七个eri基因的编码序列。复合培养基制备的菌丝体中齿孔酸C含量显著更高,而基本培养基制备的菌丝体中齿孔酸Q含量更高,这表明与底物组成差异相关的生物合成途径发生了改变。尽管齿孔酸浓度存在明显差异,但两种液体培养基制备的菌丝体中eri基因转录水平没有显著差异。当通过基因表达或化合物浓度评估时,与猴头菌子实体组织相比,菌丝体中的齿孔酸生物合成量要高得多。

结论

除了子实体样品中未检测到齿孔酸外,与菌丝体相比,子实体中的eri基因转录本始终下调,尤其是在生物合成途径的早期阶段。底物组成是猴头菌产生齿孔酸的关键因素,菌丝体中齿孔酸含量可能会有很大差异,而eri基因表达却没有显著差异。我们的数据支持这样的假设,即真菌次生代谢产物的产生会受到组织类型和底物成分的影响,并且与子实体相比,eri基因在菌丝体中的表达更为丰富。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/672e/11969743/d68e55b63221/40694_2025_194_Fig1_HTML.jpg

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