食品科学 ›› 2017, Vol. 38 ›› Issue (18): 1-7.doi: 10.7506/spkx1002-6630-201718001

• 生物工程 •    下一篇

响应面法优化Chlamydomonas sp. 212产胞内多糖发酵工艺及其抑菌活性

孙建瑞,符丹丹,赵君峰,王大红,古绍彬   

  1. (河南科技大学食品与生物工程学院,洛阳市微生物发酵工程技术研究中心,河南?洛阳 471023)
  • 出版日期:2017-09-25 发布日期:2017-09-04
  • 基金资助:
    国家自然科学基金青年科学基金项目(31401672);河南省科技厅重点攻关项目(162102110056); 河南省高等学校重点科研项目(17B180003);河南科技大学博士科研启动基金项目(13480054)

Optimization of Fermentation Process for the Production of Intracellular Polysaccharide from Chlamydomonas sp. 212 and Its Antimicrobial Activity

SUN Jianrui, FU Dandan, ZHAO Junfeng, WANG Dahong, GU Shaobin   

  1. (Luoyang Engineering and Technology Research Center of Microbial Fermentation, College of Food and Bioengineering, Henan University of Science and Technology, Luoyang 471023, China)
  • Online:2017-09-25 Published:2017-09-04

摘要: 通过响应面法优化淡水微藻Chlamydomonas sp. 212产胞内多糖的发酵工艺,并采用滤纸片法对其抑菌活性进行研究。经优化后,Chlamydomonas sp. 212产胞内多糖发酵工艺的最优参数为NaNO3质量浓度305.01?mg/L、NaCl质量浓度93.66?mg/L、NaHCO3质量浓度2.12?g/L;在此条件下,其胞内多糖产量为91.182?3?mg/L,比优化前提高了1.6?倍。抑菌活性研究结果表明:Chlamydomonas sp. 212的胞内多糖对细菌有一定程度的抑制作用,其中对沙门氏菌的抑菌作用最强,对大肠杆菌、白色葡萄球菌、金黄色葡萄球菌的抑制作用较弱;对真菌的抑制作用较弱,仅对黑曲霉有较弱的抑制作用。本研究为筛选新的天然抗菌活性物质及产油微藻的综合开发利用提供了一定的理论依据。

关键词: 衣藻, 胞内多糖, 响应面法, 发酵工艺, 抑菌活性

Abstract: Response surface methodology was applied to optimize the fermentation process of intracellular polysaccharide production from Chlamydomonas sp. 212. Then, the antibacterial activity of intracellular polysaccharide was studied by filter paper disc method. The optimum fermentation medium was found to consist of NaNO3 305.01 mg/L, NaCl 93.66 mg/L, and NaHCO3 2.12 g/L. The bacterium grown in the optimized medium yielded 91.182 3 mg/L of intracellular polysaccharide, which was increased by 160% compared to that obtained using the unoptimized medium. The intracellular polysaccharide from Chlamydomonas sp. 212 had strong antibacterial activity against Salmonella typhimurium and weak antimicrobial activity against Escherichia coli, Staphylococcus albus, Staphylococcus?aureus and Aspergillus niger. This study may provide a theoretical basis for the screening of new natural antimicrobial substances and for the comprehensive utilization of oleaginous microalgae.

Key words: Chlamydomonas sp., intracellular polysaccharide, response surface methodology, fermentation process, antibacterial activity

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