食品科学 ›› 2012, Vol. 33 ›› Issue (7): 237-241.doi: 10.7506/spkx1002-6630-201207050

• 生物工程 • 上一篇    下一篇

应用渗透膜高密度培养富硒螺旋藻

任璐艳,靳兴媛,周永林,张逸波,凌钦婕,黄 峙*   

  1. 暨南大学生命科学技术学院
  • 出版日期:2012-04-15 发布日期:2012-04-20
  • 基金资助:
    国家自然科学基金项目(20975045)

Application of Osmotic Membrane for High Cell Density Culture of Selenium-Enriched Spirulina platensis

REN Lu-yan,JIN Xing-yuan,ZHOU Yong-lin,ZHANG Yi-bo,LING Qin-jie,HUANG Zhi*   

  1. (College of Life Science and Technology, Jinan University, Guangzhou 510632, China)
  • Online:2012-04-15 Published:2012-04-20

摘要: 应用透析袋(OT法)组装光生物反应器,与鼓泡式生物反应器(AB法)和摇瓶(SB法)进行对比实验,探讨利用渗透膜建立高密度培养富硒螺旋藻(Se-SP)方法的可行性。称质量法监测并推算藻细胞生长率和最大生物量,荧光光度法测定Se-SP及其培养液中硒含量和形态变化,分光光度法检测Se-SP中总蛋白(TP)、藻蓝蛋白(PC)、叶绿素a(Chla)、总胡萝卜素(Caro)、水溶性多糖(SPS)及巯基(-SH)含量等主要营养构成,培养液中无机碳(IC)和有机溶解碳(DOC)的含量采用自动分析仪测定。结果发现:OT法培养Se-SP的最大生物量可达9.6g/L,是AB和SB方法培养的3~5倍,其中有机硒转化率及TP、PC、Chla、SPS和-SH等主要营养成分的含量均有明显提高。相应地,培养基中 IC剩余减少, DOC无明显累积。结果提示,OT法可实现Se-SP高密度培养,并有望获得优质Se-SP产品,其优势体现在高细胞增殖速率、高有机硒转化率、高无机营养源消耗率和低有机碳的积累,便于培养液的再生利用,减少废液污染。

关键词: 螺旋藻, 硒, 高密度培养

Abstract: Selenium-enriched Spirulina platensis (Se-SP) was cultured in osmotic membrane tube (OT) and compared with air blowing bioreactor (AB) and shaking bottle (SB) cultures under the same conditions. Se supplementation was 100 μg/mL in the form of sodium selenite. Growth rate and maximum biomass were monitored and deduced according to dry weight at designated time points. Total Se, organic Se and inorganic Se in Se-SP as well as soluble and insoluble Se species in culture medium were determined using a fluorimeter. Total protein (TP), phycocyanin (PC), chlorophyll a (Chla), carotenoids (Caro), total polysaccharides (SPS) and sulfydryl groups (-SH) in Se-SP were also detected colorimetrically. The contents of inorganic carbon (IC) and dissolved organic carbon (DOC) in culture medium were measured using a TOC-5000A analyzer. The results showed that the maximum biomass of Se-SP was up to 9.6 g/L during cultivation in OT tube, which was increased by 3-5 fold compared with AB and SB cultures. The conversion rate of organic Se and the contents of TP, PC, Chla, SPS and SH group in Se-SP from OT culture were significantly higher than those from AB and SB cultures. Accordingly, OT culture produced lower IC residues and less accumulation of DOC, and higher soluble Se in the conditioned culture medium. In conclusion, OT can be used as a novel material for high cell density culture of Se-PS and it will have the advantages of high cell proliferation rate, high biotransformation of organic Se, high consumption of inorganic nutritional sources, low accumulation of organic carbon and less release of waster water.

Key words: Spirulina platensis, selenium, high density culture

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