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蛹虫草中虫草素生物合成的新互补途径。

A novel complementary pathway of cordycepin biosynthesis in Cordyceps militaris.

机构信息

Bioengineering College Beijing Polytechnic, Beijing, 100176, China.

Department of English, Beijing Health Vocational College, Beijing, 102402, China.

出版信息

Int Microbiol. 2024 Aug;27(4):1009-1021. doi: 10.1007/s10123-023-00448-9. Epub 2023 Nov 21.

Abstract

We determined whether there exists a complementary pathway of cordycepin biosynthesis in wild-type Cordyceps militaris, high-cordycepin-producing strain C. militaris GYS60, and low-cordycepin-producing strain C. militaris GYS80. Differentially expressed genes were identified from the transcriptomes of the three strains. Compared with C. militaris, in GYS60 and GYS80, we identified 145 and 470 upregulated and 96 and 594 downregulated genes. Compared with GYS80, in GYS60, we identified 306 upregulated and 207 downregulated genes. Gene Ontology analysis revealed that upregulated genes were mostly involved in detoxification, antioxidant, and molecular transducer in GYS60. By Clusters of Orthologous Groups of Proteins and Kyoto Encyclopedia of Genes and Genomes analyses, eight genes were significantly upregulated: five genes related to purine metabolism, one to ATP production, one to secondary metabolite transport, and one to RNA degradation. In GYS60, cordycepin was significantly increased by upregulation of ATP production, which promoted 3',5'-cyclic AMP production. Cyclic AMP accelerated 3'-AMP accumulation, and cordycepin continued to be synthesized and exported. We verified the novel complementary pathway by adding the precursor adenosine and analyzing the expression of four key genes involved in the main pathway of cordycepin biosynthesis. Adenosine addition increased cordycepin production by 51.2% and 10.1%, respectively, in C. militaris and GYS60. Four genes in the main pathway in GYS60 were not upregulated.

摘要

我们确定了在野生型蛹虫草、高虫草素产生菌株蛹虫草 GYS60 和低虫草素产生菌株蛹虫草 GYS80 中是否存在虫草素生物合成的互补途径。从这三个菌株的转录组中鉴定出差异表达的基因。与蛹虫草相比,在 GYS60 和 GYS80 中,我们分别鉴定出 145 个和 470 个上调基因以及 96 个和 594 个下调基因。与 GYS80 相比,在 GYS60 中,我们分别鉴定出 306 个上调基因和 207 个下调基因。基因本体论分析表明,上调基因主要参与 GYS60 的解毒、抗氧化和分子转导。通过蛋白质直系同源簇和京都基因与基因组百科全书分析,有 8 个基因显著上调:5 个与嘌呤代谢有关的基因、1 个与 ATP 产生有关的基因、1 个与次生代谢物转运有关的基因、1 个与 RNA 降解有关的基因。在 GYS60 中,虫草素的产量显著增加,这是由于 ATP 产生的上调,从而促进了 3',5'-环腺苷酸的产生。环腺苷酸加速了 3'-AMP 的积累,虫草素继续合成并输出。我们通过添加前体腺苷并分析参与虫草素生物合成主要途径的四个关键基因的表达来验证了这条新的互补途径。添加腺苷分别使蛹虫草和 GYS60 中的虫草素产量增加了 51.2%和 10.1%。在 GYS60 中,主要途径的四个基因没有上调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95a4/11300563/6c6e9c987208/10123_2023_448_Fig1_HTML.jpg

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