首页> 外文期刊>Biotechnology Advances: An International Review Journal >Impacts of calcium signal transduction on the fermentation production of antitumor ganoderic acids by medicinal mushroom Ganoderma lucidum. (Special Issue: ACB 2011.)
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Impacts of calcium signal transduction on the fermentation production of antitumor ganoderic acids by medicinal mushroom Ganoderma lucidum. (Special Issue: ACB 2011.)

机译:钙信号转导对药用蘑菇灵芝发酵生产抗肿瘤灵芝酸的影响。 (特刊:ACB2011。)

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Recently signal transduction engineering of secondary metabolism is receiving great interest as a powerful tool towards efficient production of valuable secondary metabolites. This work found that the calcineurin-signal transduction was significant to triterpene biosynthesis by higher fungus (mushroom). Addition of calcium ion (at 10 mM) to static liquid cultures of Ganoderma lucidum, a famous traditional medicinal mushroom, was proved as a useful strategy to enhance the production of antitumor ganoderic acids (GAs), which resulted in 3.7-, 2.6-, 4.5-, 3.2- and 3.8-fold improvement of total GAs, individual GA-Mk, -T, -S, and -Me, respectively. Experiments using Ca2+ sensor inhibitors indicated the involvement of calcineurin signal in regulating GAs biosynthesis. Quantitative gene transcription analysis revealed that the expression levels of genes of GAs biosynthesis and Ca2+ sensor were up-regulated with calcium addition while down-regulated under the inhibitors addition, suggesting that higher GAs production may be resulted from higher expressions of those genes. Based on the results obtained, a possible model on the effect of external calcium ion on the GAs biosynthesis via calcineurin signal transduction pathway was proposed.
机译:近来,次级代谢的信号转导工程作为有效生产有价值的次级代谢产物的有力工具受到了广泛的关注。这项工作发现钙调神经磷酸酶信号转导对高级真菌(蘑菇)的三萜生物合成具有重要意义。事实证明,在著名的传统药用蘑菇灵芝的静态液体培养物中添加钙离子(10 mM)是提高抗肿瘤灵芝酸(GAs)产量的有效策略,可产生3.7-,2.6-,总GA,单个GA-Mk,-T,-S和-Me分别提高了4.5-,3.2-和3.8倍。使用Ca 2 + 传感器抑制剂的实验表明钙调神经磷酸酶信号参与了GAs生物合成的调控。基因定量转录分析表明,添加钙可上调GAs生物合成基因和Ca 2 + 传感器的基因表达水平,而添加抑制剂则下调GAs生物合成基因的表达水平,提示可能产生更高的GAs产量。这些基因的较高表达。根据获得的结果,提出了一个外部钙离子通过钙调神经磷酸酶信号转导途径对GAs生物合成影响的可能模型。

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