侧耳属菌株XH005液体发酵产漆酶工艺优化

Optimization of the submerged fermentation process for laccase production by Pleurotus sp. XH005

  • 摘要:
    目的 微生物发酵法是工业化生产漆酶的主要方法,但该法存在产酶水平低等问题。以实验室保存的1株真菌侧耳XH005为研究对象,对其产漆酶的发酵工艺进行优化。
    方法 通过单因素和响应面优化实验,对侧耳XH005在不同发酵条件下的漆酶酶活进行了测定,并优化了其产酶工艺,分析了碳氮源添加量、接种量、pH以及金属离子添加量对液体发酵工艺的影响。
    结果 通过单因素试验确定了碳氮源添加量、接种量和金属离子添加量为影响漆酶酶活的4个重要因素。响应面分析最佳产漆酶发酵条件为:葡萄糖添加量39.45 g/L,酵母浸粉添加量5.97 g/L,接种量3.23%,Cu2+浓度0.85 mmol/L。在此条件下,发酵8 d漆酶酶活为(480.22 ± 7.53) U/mL,是优化前的2.81倍。
    结论 响应面优化试验减少了试验次数,提升了漆酶酶活,为漆酶的工业化生产提供优良菌种,同时为微生物发酵产漆酶的研究提供试验基础。

     

    Abstract:
    Objective Industrial production of laccase primarily relies on microbial fermentation; however, microbial fermentation processes for laccase production suffer from low enzyme yields. In this study, a laboratory-preserved fungal strain, Pleurotus sp. XH005, was used to optimize its fermentation process for laccase production.
    Methods Through single-factor and response surface optimization experiments, laccase activity of Pleurotus sp. XH005 under various fermentation conditions was measured, and the enzyme production process was optimized. The effects of carbon and nitrogen source concentrations, inoculum size, pH, and metal ion addition on submerged fermentation were investigated.
    Results Single-factor experiments identified carbon source concentration, nitrogen source concentration, inoculum size, and metal ion concentration as the four significant factors affecting laccase activity. Response surface analysis determined the optimal fermentation conditions for laccase production to be: glucose 39.45 g/L, yeast extract 5.97 g/L, inoculum size 3.23%, and Cu2+ concentration 0.85 mmol/L. Under these conditions, after 8 days of fermentation, the laccase activity reached 480.22 ± 7.53 U/mL, which was 2.81 times that before optimization.
    Conclusion The response surface optimization experiment reduced the number of experimental trials and enhanced laccase production, providing an excellent strain for industrial laccase production and an experimental foundation for research on microbial laccase fermentation.

     

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