首页> 外文期刊>Journal of Applied Phycology >Morphology, cell growth, and polysaccharide production of Nostoc flagelliforme in liquid suspension culture at different agitation rates
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Morphology, cell growth, and polysaccharide production of Nostoc flagelliforme in liquid suspension culture at different agitation rates

机译:不同搅拌速率下液体悬浮培养中鞭毛小菜蛾的形态,细胞生长和多糖产生

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摘要

Noscoc flagelliforme is a terrestrial macroscopic cyanobacterium with high economic value. Free-living cells that were separated from a natural colony of N. flagelliforme were cultivated in a 20-L photobioreactor for 16 days at five agitation rates with impeller tip speeds at 0.3, 0., 0.8, 1.0, and 1.5 m·s?1. With different impeller tip speeds there were significant differences in the cell growth and polysaccharide production, and different types of cell colonies appeared because of different shear forces caused by agitation. At harvest time, cell concentrations with tip speeds of 0.8 and 1.0 m·s?1 were clearly higher than those with the other three tip speeds, but dry cell weights with the tip speeds of 0.3, 0.5, 0.8, and 1.0 m·s?1 were almost the same. The highest RPS (polysaccharide that released into liquid medium) production was obtained with the tip speeds of 0.8 and 1.0 m·s?1, while the highest EPS (polysaccharide that formed capsule or slime layer) production was obtained with the tip speed of 0.5 m·s?1. The tip speed of 1.5 m·s?1 was harmful for both cell growth and polysaccharide production, indicating that an appropriate shear force was needed in the liquid suspension culture of N. flagelliforme.
机译:Noscoc鞭毛虫是一种具有较高经济价值的陆地宏观蓝细菌。在20升光生物反应器中,以五种搅拌速率在20升光生物反应器中培养分离自鞭毛自然菌落的自由生活细胞16天,叶轮尖端速度分别为0.3、0、0.8、1.0和1.5 m·s。 1 。在叶轮叶尖速度不同的情况下,细胞生长和多糖产生存在显着差异,并且由于搅拌引起的不同剪切力而出现了不同类型的细胞集落。在收获时,尖端速度为0.8和1.0 m·s?1 的细胞浓度明显高于其他三种尖端速度的细胞浓度,但尖端速度为0.3、0.5、0.8和0.8的干细胞重量明显增加。 1.0 m·s?1 几乎相同。尖端速度分别为0.8和1.0 m·s?1 时,RPS(释放到液体介质中的多糖)产量最高,而(EPS)(形成胶囊或粘液层的多糖)产量最高。尖端速度为0.5 m·s?1 。 1.5 m·s?1 的叶尖速度对细胞生长和多糖产生均有害,这表明鞭毛猪笼草的悬浮液需要适当的剪切力。

著录项

  • 来源
    《Journal of Applied Phycology》 |2008年第3期|213-217|共5页
  • 作者单位

    College of Bioengineering Tianjin Key Lab of Industrial Microbiology Tianjin University of Science and Technology Tianjin 300222 China;

    College of Bioengineering Tianjin Key Lab of Industrial Microbiology Tianjin University of Science and Technology Tianjin 300222 China;

    College of Bioengineering Tianjin Key Lab of Industrial Microbiology Tianjin University of Science and Technology Tianjin 300222 China;

    College of Bioengineering Tianjin Key Lab of Industrial Microbiology Tianjin University of Science and Technology Tianjin 300222 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nostoc flagelliforme; Cell growth; Polysaccharide; Photobioreactor; Agitation rate; Impeller tip speed;

    机译:鞭毛成虫;细胞生长;多糖;光生物反应器;搅拌速率;叶轮尖端速度;

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