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Metabolic comparison of aerial and submerged mycelia formed in the liquid surface culture of Cordyceps militaris

机译:Cord虫草液体表面培养形成的气生菌丝和淹没菌丝的代谢比较

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摘要

An entomopathogenic fungus, Cordyceps sp. has been known to produce cordycepin which is a purine nucleoside antimetabolite and antibiotic with potential anticancer, antioxidant and anti‐inflammatory activities. Interestingly, Cordyceps militaris produces significantly higher amount in a liquid surface culture than in a submerged culture. The liquid surface culture consists of mycelia growing into the air (aerial mycelia) and mycelia growing toward the bottom into the medium (submerged mycelia). In this study, to clarify roles of aerial and submerged mycelia of C. militaris in the cordycepin production the difference in metabolism between these mycelia was investigated. From transcriptomic analyses of the aerial and submerged mycelia at the culture of 5, 12 and 19 days, the metabolism of the submerged mycelia switched from the oxidative phosphorylation to the fermentation pathway. This activated the pentose phosphate pathway to provide building block materials for the nucleotide biosynthetic pathway. Under hypoxic conditions, the 5‐aminolevulinic acid synthase (CCM_01504), delta‐aminolevulinic acid dehydratase (CCM_00935), coproporphyrinogen III oxidase (CCM_07483) and cytochrome c oxidase 15 (CCM_05057) genes of heme biosynthesis were significantly upregulated. In addition, the liquid surface culture revealed that metabolite coproporhyrinogen III and glycine, the product and precursor of heme, were increased at 12th day and decreased at 19th day, respectively. These results indicate that the submerged mycelia induce the activation of iron acquisition, the ergosterol biosynthetic pathway, and the iron cluster genes of cordycepin biosynthesis in a hypoxic condition. Even though, the expression of the cluster genes of cordycepin biosynthesis was not significantly different in both types of mycelia.
机译:虫病真菌虫草菌已知生产虫草素是一种嘌呤核苷抗代谢药和抗生素,具有潜在的抗癌,抗氧化和抗炎活性。有趣的是,Cord虫草在液体表面培养物中的产量要比在淹没培养物中高得多。液体表面培养物由生长到空气中的菌丝体(空中菌丝体)和向底部生长到培养基中的菌丝体(淹没的菌丝体)组成。在这项研究中,为弄清虫的气生和淹没菌丝体在虫草素生产中的作用,研究了这些菌丝体之间代谢的差异。通过对5、12和19天培养的气生和深层菌丝体的转录组分析,深层菌丝体的代谢从氧化磷酸化转变为发酵途径。这激活了磷酸戊糖途径,以提供用于核苷酸生物合成途径的构件材料。在缺氧条件下,血红素生物合成的5-氨基乙酰丙酸合酶(CCM_01504),δ-氨基乙酰丙酸脱水酶(CCM_00935),辅原卟啉原III氧化酶(CCM_07483)和细胞色素c氧化酶15(CCM_05057)基因被显着上调。另外,液体表面培养表明,血红素的产物和前体的代谢产物辅原蛋白原III和甘氨酸分别在第12天增加,在第19天减少。这些结果表明,在低氧条件下,淹没的菌丝体诱导了铁的活化,麦角固醇的生物合成途径和虫草素生物合成的铁簇基因。即使在两种类型的菌丝体中,虫草素生物合成簇基因的表达也没有显着差异。

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