Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China.
Faculty of Life Science and Technology, Kunming University of Science and Technology, Kunming, 650500, China.
J Biotechnol. 2021 Feb 20;328:72-77. doi: 10.1016/j.jbiotec.2021.01.014. Epub 2021 Jan 21.
Ganoderic acids (GAs) produced by Ganoderma are a type of lanostane-type triterpenoids with anticancer and antimetastatic activities; however, low production of GAs limits its wide application. In this study, a novel strategy by promoting sporulation of Ganoderma was developed to increase GA production. First, a high-spore producing Ganoderma strain G. 260125 was obtained from dikaryotic strain CGMCC 5.0026, and the sporulation-specific gene of this strain exhibits a higher transcription level than CGMCC 5.0026. Then, the effect of promoting sporulation on GA content was investigated. The maximum ganoderic acid (GA)-T, GA-Mk, and GA-Me contents in G. 260125 in shake flasks were 358.97, 78.32, and 12.75 μg/100 mg dry weight, respectively, which were 3.42, 2.91, and 1.73 times higher than those obtained in CGMCC 5.0026. Moreover, total and individual GA contents in spores were significantly higher than those in liquid static culture. Both concentrations of intermediates and transcription levels of GA biosynthetic genes also improved in G. 260125 during fermentation compared with those in CGMCC 5.0026. For scaling-up experiments, GA-T, GA-Me, and GA-Mk production in G. 260125 improved by 2.2-, 2.6-, and 2.1-fold compared with those in CGMCC 5.0026. In addition, the effectiveness of the developed strategy was also confirmed in three different Ganoderma strains. This work illustrated that promoting sporulation efficiently improves GA production in liquid static cultures of Ganoderma.
灵芝产生的灵芝酸 (GAs) 是一种具有抗癌和抗转移活性的羊毛甾烷型三萜类化合物;然而,GA 的低产量限制了其广泛应用。在这项研究中,通过促进灵芝孢子形成开发了一种增加 GA 产量的新策略。首先,从双核菌株 CGMCC 5.0026 中获得了高孢子产生的灵芝菌株 G. 260125,该菌株的孢子形成特异性基因的转录水平高于 CGMCC 5.0026。然后,研究了促进孢子形成对 GA 含量的影响。摇瓶中 G. 260125 的最大灵芝酸(GA)-T、GA-Mk 和 GA-Me 含量分别为 358.97、78.32 和 12.75 μg/100 mg 干重,分别比 CGMCC 5.0026 高 3.42、2.91 和 1.73 倍。此外,孢子中的总 GA 和单体 GA 含量明显高于液体静置培养物中的含量。与 CGMCC 5.0026 相比,发酵过程中 G. 260125 中的中间产物浓度和 GA 生物合成基因的转录水平也有所提高。对于放大实验,与 CGMCC 5.0026 相比,G. 260125 中 GA-T、GA-Me 和 GA-Mk 的产量分别提高了 2.2、2.6 和 2.1 倍。此外,该策略的有效性也在三种不同的灵芝菌株中得到了验证。这项工作表明,在灵芝液体静置培养中,促进孢子形成可有效地提高 GA 产量。