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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Scale-Up ofDuddingtonia flagransChlamydospores Production from Laboratory to Pilot-Scale Using a Solid-State Fermentation System
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Scale-Up ofDuddingtonia flagransChlamydospores Production from Laboratory to Pilot-Scale Using a Solid-State Fermentation System

机译:Scale-Up Ofdudtonia Flagranschlamydospores使用实验室生产使用固态发酵系统的试验范围

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摘要

The fungusDuddingtonia flagransis a biological control tool to reduce infective larvae of gastrointestinal nematode in pastures. To create a commercially available bioproduct based on a nematophagous fungus, an efficient mass production process should be developed that is able to guarantee a good predatory capacity and satisfactory production rates. In this work, solid-state fermentation (SSF) parameters were investigated to produceD. flagransat pilot-scale. The results showed that the relative humidity was a critical factor to increase productivity and to reduce fermentation time. The best production conditions using a tray bioreactor were a relative humidity in the room at 90% for 2 days, and inoculation by sprinkling. The fermentation process was composed of 7 days under submerged fermentation to produce the inoculum and 7 more days of SSF in a tray bioreactor. The productivity reached was 4.96 x 10(6)chlamydospores g(-1)of dry substrate day(-1), which is the highest productivity reported to date. The predatory capacity of the chlamydospores produced using this process was 91%. Also, a statistical control process analysis was applied, finding that the process presents stability in the biological activity, yield, and final moisture content of the substrate between batches. Finally, the operational expenses (OPEX) based on the use of the heating and humidification system were estimated, given a final cost of 0.20 USD g(-1)of the fermented substrate.
机译:Fungusduddingtonia瘟病毒一种生物控制工具,用于减少牧场胃肠道线虫的感染幼虫。为了基于Nematophagous真菌创造市售的BioProduct,应该开发出一种有效的批量生产过程,能够保证良好的掠夺性能和令人满意的生产率。在这项工作中,研究了固态发酵(SSF)参数来生产。 Flagransat先导规模。结果表明,相对湿度是提高生产率和减少发酵时间的关键因素。使用托盘生物反应器的最佳生产条件在房间中的相对湿度为90%,持续2天,并通过喷洒接种。发酵过程由浸没式发酵的7天组成,在托盘生物反应器中产生接种物和7天的SSF。达到的生产率为4.96×10(6)氯孢子孢子G(-1)干基质日(-1),这是迄今为止报告的最高生产率。使用该方法生产的衣原体孢子孢子的捕食能力为91%。而且,应用统计控制过程分析,发现该方法在批次之间存在生物活性,产率和最终水分含量的稳定性。最后,估计基于使用加热和加湿系统的操作费用(OPEX),给出了发酵底物的最终成本0.20美元。

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