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首页> 外文期刊>Biotechnology and Bioengineering >Induced effect of Na~+ on ganoderic acid biosynthesis in static liquid culture of Ganoderma lucidum via calcineurin signal transduction
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Induced effect of Na~+ on ganoderic acid biosynthesis in static liquid culture of Ganoderma lucidum via calcineurin signal transduction

机译:Na〜+对钙调神经磷酸酶信号转导灵芝静态液体培养灵芝酸生物合成的诱导作用

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摘要

Na~+/Ca~(2+) exchange is important to cell physiology and metabolism, but its role in the secondary metabolite biosynthesis by fungi is yet unclear. In this work, in static liquid cultures of Ganoderma lucidum, which is an efficient process for hyper-production of anti-tumor ganoderic acids (GAs), it was interestingly found that Na+ addition could enhance the GAs production, but K~+ did not. Further investigation by intracellular Ca~(2+) imaging and using a calcineurin inhibitor (i.e., cyclosporin A) revealed that addition of Na~+ led to the influx of Ca~(2+) from culture broth to the cells and calcineurin signals were also triggered. Addition of 100mM Na~+ at the beginning of the static liquid cultivation, in which the addition dosage and timing were optimized, resulted in 2.8-fold improvement of total GAs production. Quantitative gene transcription analysis indicated that the expression levels of the genes of Ca~(2+) sensors and GA biosynthesis were upregulated with Na~+ induction while downregulated by using the calcineurin inhibitor, implying that higher GA production might result from higher expression of those genes. This work not only provided a simple and efficient induction strategy by Na~+ addition for the improved GAs production but also suggested the regulation mechanism of Na~+ on the GA biosynthesis through calcineurin signaling transduction.
机译:Na〜+ / Ca〜(2+)的交换对细胞生理和代谢很重要,但是在真菌二次代谢产物生物合成中的作用尚不清楚。在这项工作中,在灵芝的静态液体培养物中,这是超量生产抗肿瘤灵芝酸(GAs)的有效过程,有趣的是,发现添加Na +可以提高GAs的产量,但K〜+却不能。通过细胞内Ca〜(2+)成像和钙调神经磷酸酶抑制剂(即环孢菌素A)的进一步研究表明,添加Na〜+导致Ca〜(2+)从培养液流入细胞,并且钙调神经磷酸酶信号是也触发了。在静态液体培养开始时添加100mM Na〜+,优化了添加剂量和时间,使总GAs产量提高了2.8倍。定量基因转录分析表明,Ca〜(2+)传感器和GA生物合成的基因表达水平被Na〜+诱导上调,而钙调神经磷酸酶抑制剂下调,这暗示了GA〜2 +传感器和GA生物合成的高表达可能是由于它们的高表达所致。基因。这项工作不仅为添加Na〜+提供了简单有效的诱导策略,以改善GAs的产生,而且还提出了Na〜+通过钙调神经磷酸酶信号转导对GA生物合成的调控机制。

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