Optimization of Submerged Fermentation Conditions for Polysaccharide Production in Species of the Genus Ganoderma (Agaricomycetes) and Comparative Analysis of the Antioxidant Activities of Different Strains.

Shanshan Luo, Yilin Luo, Yi Yuan, Jiliang Zhou, Wei Huang, Xiaomin Wu, Tian-Xu Cao, Ping Du
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Abstract

Species of the genus Ganoderma are important medicinal and edible mushrooms, with polysaccharides being its main active ingredient. The submerged fermentation of Ganoderma is an important source of polysaccharides in the mycelia. In this study, a single factor test and an orthogonal test were employed to optimize the medium and fermentation conditions with the objective of obtaining a high content of polysaccharide in the liquid submerged fermentation culture mycelia of Ganoderma species. The results demonstrated that the optimal culture medium formula for polysaccharide accumulation in mycelia was: soluble starch, 25 g/L; wheat bran, 3 g/L; and KH2PO4, 4.5 g/L, with a pH of 4.0, and the optimal culture conditions were a temperature of 27°C, a rotational speed of 90 r/min, and an incubation period of 11 d. Furthermore, the mycelia of 20 strains from nine species of Ganoderma were cultured under optimal fermentation conditions, and the content of polysaccharide in mycelia and its antioxidant activity were analyzed. The findings revealed that the polysaccharide content in the mycelia of strains GD and Du996 was notably elevated, at 56.97 and 53.22 mg/g, respectively. The polysaccharide content was found to be high in the mycelia of G. sichuanense and G. lucidum, with an average of 35 mg/g. Nevertheless, no notable discrepancy was observed in the polysaccharide content of the mycelia of the cultivated and wild strains. Moreover, the antioxidant activity analysis revealed that the DPPH clearance rate of strains Du1320, Du280, and GD was 92.85%, 90.86%, and 89.06%, respectively. The ABTS clearance rate of strain GSD was the highest (75.39%), and the hydroxyl radical clearance rate of strain GD was the highest (81.98%). In conclusion, this study optimized the medium and conditions for high polysaccharide yield in the liquid submerged fermentation culture of Ganoderma and identified the strains with the highest yield and antioxidant activity. The present results may provide a theoretical basis for the future production of polysaccharides in mycelia by liquid fermentation of Ganoderma as well as for the development and utilization of strains with high polysaccharide yield and antioxidant activity.

灵芝(菌类)深层发酵产多糖条件优化及不同菌株抗氧化活性比较分析
灵芝属的种类是重要的药用和食用蘑菇,多糖是其主要活性成分。深层发酵是灵芝菌丝体中多糖的重要来源。本研究采用单因素试验和正交试验对培养基和发酵条件进行优化,以获得高多糖含量的灵芝菌丝体液体深层发酵培养基。结果表明,菌丝中多糖积累的最佳培养基配方为:可溶性淀粉25 g/L;麦麸,3g /L;和KH2PO4, 4.5 g/L, pH为4.0,最佳培养条件为温度为27℃,转速为90 r/min,孵育时间为11 d。在最佳发酵条件下,对9种灵芝菌株的20株菌丝体进行培养,分析菌丝体中多糖含量及其抗氧化活性。结果表明,菌株GD和Du996菌丝体中多糖含量显著升高,分别为56.97和53.22 mg/g。结果表明,川芎和灵芝菌丝体中多糖含量较高,平均为35 mg/g。然而,栽培菌株和野生菌株菌丝的多糖含量没有显著差异。抗氧化活性分析显示,菌株Du1320、Du280和GD的DPPH清除率分别为92.85%、90.86%和89.06%。菌株GSD的ABTS清除率最高(75.39%),菌株GD的羟基自由基清除率最高(81.98%)。综上所述,本研究优化了灵芝液体深层发酵培养中多糖高产率的培养基和条件,并鉴定出产率和抗氧化活性最高的菌株。本研究结果可为未来灵芝液体发酵菌丝体生产多糖,以及开发和利用多糖产量高、抗氧化活性高的菌株提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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