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Enhanced production of polysaccharides and triterpenoids in Ganoderma lucidum fruit bodies on induction with signal transduction during the fruiting stage

机译:诱导期信号传导诱导灵芝子实体中多糖和三萜类化合物的产生增加

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摘要

Ganoderma lucidum is a medicinal mushroom that has been widely used in East Asia for the treatment of various diseases. The pharmacological activity of this fungus is primarily attributable to the polysaccharides and triterpenoids. In this study, to obtain the fruit bodies with improved content of active constituents, we examined the effect of salicylic acid (SA) and calcium ion on the biosynthesis of polysaccharides and triterpenoids by spraying the chemicals during the fruiting. To explore the underlying mechanisms for the variation, the transcripts of related genes involved in the polysaccharide and triterpenoid biosynthesis were measured. Results showed that Ca2+ had no effect on production of polysaccharides and triterpenoids, whereas SA increased triterpenoid content by 23.32%, compared to the control, but it had little influence on polysaccharide production. Interestingly, the combined induction increased polysaccharide and triterpenoid content by 9.02% and 13.61%, respectively, compared to the control. Under Ca2+ induction, the transcript of ugp gene in the polysaccharide biosynthetic pathway up-regulated in all three stages (mycelium, primordium, and fruit body), while pgm and gls gave no response in the mycelium and primordium stages, and up-regulated in the fruit body stage. Differently, six key triterpenoid biosynthetic genes including hmgr, hmgs, mvd, fps, sqs, and ls did not respond to the induction. In the case of SA and combined induction, pgm and ugp were up-regulated in all three stages, while gls showed an increased expression in the primordium stage and no response in other stages. The six triterpenoid biosynthetic genes were up-regulated in all three stages. The present study provides a useful approach to producing G. lucidum fruit bodies with high polysaccharide and triterpenoid content. This is important to the G. lucidum industry.
机译:灵芝是一种药用蘑菇,已在东亚广泛用于治疗各种疾病。该真菌的药理活性主要归因于多糖和三萜类化合物。在这项研究中,为了获得具有改善的有效成分含量的子实体,我们通过在结果过程中喷洒化学物质,研究了水杨酸(SA)和钙离子对多糖和三萜类化合物生物合成的影响。为了探索这种变化的潜在机制,测定了参与多糖和三萜类生物合成的相关基因的转录本。结果表明,Ca 2 + 对多糖和三萜的产生没有影响,而SA与对照组相比,三萜的含量增加了23.32%,但对多糖的产生影响很小。有趣的是,与对照相比,联合诱导分别使多糖和三萜类化合物的含量增加了9.02%和13.61%。在Ca 2 + 诱导下,多糖生物合成途径中的ugp基因的转录在三个阶段(菌丝体,原基和子实体)均上调,而pgm和gls在菌丝体中没有反应。和原基期,并在子实体期上调。不同的是,六个关键的三萜类生物合成基因,包括hmgr,hms,mvd,fps,sqs和ls对诱导没有反应。在SA和联合诱导的情况下,pgm和ugp在所有三个阶段均上调,而gls在原基期表达增加,而在其他阶段则无反应。这六个三萜生物合成基因在所有三个阶段均上调。本研究提供了一种生产具有高多糖和三萜含量的灵芝子实体的有用方法。这对灵芝(G. lucidum )行业很重要。

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