首页> 外文期刊>Applied Microbiology and Biotechnology >High-yield growth and magnetosome formation by Magnetospirillum gryphiswaldense MSR-1 in an oxygen-controlled fermentor supplied solely with air
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High-yield growth and magnetosome formation by Magnetospirillum gryphiswaldense MSR-1 in an oxygen-controlled fermentor supplied solely with air

机译:在单独供氧的氧气控制型发酵罐中,由灰螺磁螺菌MSR-1进行的高产生长和磁小体形成

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摘要

Magnetotactic bacteria are difficult to grow under defined conditions in culture, which has presented a major obstacle to commercial application of magnetosomes. We studied the relationships among the cell growth, magnetosome formation, dissolved oxygen concentration (DO), and the ability to supply oxygen to the cells. Mass culture of Magnetospirillum gryphiswaldense MSR-1 for the production of magnetosomes was established in a 42-L fermentor under the following conditions: (1) sterile air was the sole gas supplied in the fermentor, and DO could be regulated at any level below 10% saturation by cascading the stir rate to DO, (2) to resolve the paradoxical situation that the cell growth requires higher DO whereas magnetosome formation requires low DO below the detectable range of regular oxygen electrode, DO was controlled to optimal level using the change of cell growth rate, rather than reading from the highly sensitive oxygen electrode, as the signal for determining appropriate DO, and (3) timing and rate of supplying the substrates were determined by measuring cell density and Na-lactate concentration. Under these conditions, cell density (OD565) of strain MSR-1 reached 7.24 after 60-h culture in a 42-L fermentor, and cell yield (dry weight) was 2.17 g/L, the highest yield so far being reported. The yield of magnetosomes (dry weight) was 41.7 mg/L and 16.7 mg/L/day, which were 2.8 and 2.7 times higher than the previously reported yields.
机译:趋磁细菌难以在限定的培养条件下生长,这已成为磁小体商业应用的主要障碍。我们研究了细胞生长,磁小体形成,溶解氧浓度(DO)和向细胞供应氧气的能力之间的关系。在以下条件下,在42升发酵罐中建立了用于生产磁小体的磁螺旋藻MSR-1的大规模培养:(1)无菌空气是发酵罐中供应的唯一气体,DO可以控制在10以下的任何水平通过将搅拌速率级联到DO来达到饱和度的百分比(2)解决以下矛盾的情况:细胞生长需要较高的DO,而磁小体的形成则需要低于常规氧电极可检测范围的低DO,通过改变DO可将其控制在最佳水平细胞生长速率,而不是从高灵敏的氧电极上读取,作为确定适当溶解氧的信号,并且(3)通过测量细胞密度和乳酸钠浓度确定底物的供应时间和速率。在这种条件下,在42升发酵罐中培养60小时后,MSR-1菌株的细胞密度(OD565 )达到7.24,细胞产量(干重)为2.17 g / L,是迄今为止最高的产量被报道。磁小体的产量(干重)分别为41.7 mg / L和16.7 mg / L / day,分别是以前报道的产量的2.8和2.7倍。

著录项

  • 来源
    《Applied Microbiology and Biotechnology》 |2008年第3期|389-397|共9页
  • 作者单位

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

    State Key Laboratories for Agrobiotechnology and College of Biological Sciences China Agricultural University Beijing 100094 People’s Republic of China;

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

    Magnetospirillum gryphiswaldense; Magnetosome; Oxygen-controlled; Fermentor; Submerged culture;

    机译:磁螺螺旋藻;磁小体;氧控制;发酵罐;深层培养;

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