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A novel nature-based alternative for photobioreactor decontaminations

机译:一种新颖的基于自然的光生物反应器去污替代品

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摘要

Large-scale microalgae cultivations are increasingly used for the production of animal feed, nutritional supplements and various high-value bioproducts. Due to the process size and other limitations, contaminations of microalgae fermentations with other photoautotrophic microorganism are frequently observed. In the present study, we explored the applicability of 5-isobutyl-2,3-dimethylpyrazine for the removal of contaminating microalgae from industrial photobioreactors. In order to select a representative microbial population for susceptibility experiments, reactor samples were obtained from a multi-stage cultivation process. Assignments of 18S rRNA gene fragment amplicons indicated that Haematococcus, Chlorella, and Scenedesmus were the three most frequently occurring microalgae genera in the selected reactors. Following the isolation of representative algae cultures, susceptibility tests were conducted with the antimicrobial pyrazine. It was demonstrated that all isolated contaminants are highly susceptible to the bioactive compound. The highest tolerance towards the alkylpyrazine was observed with Scenedesmus vacuolatus; solutions with 1.66% (v/v) of the active compound were required for its deactivation. Further tests with the vaporized pyrazine showed consistent reductions in the viability of treated microalgae. This pilot study provides evidence for the applicability of a novel, nature-based alternative for bioreactor decontaminations.
机译:大型微藻养殖越来越多地用于生产动物饲料,营养补品和各种高价值的生物产品。由于过程大小和其他限制,经常观察到微藻发酵受到其他光合自养微生物的污染。在本研究中,我们探索了5-异丁基-2,3-二甲基吡嗪在工业光生物反应器中去除污染微藻的适用性。为了选择代表性的微生物种群进行药敏实验,从多阶段培养过程中获得了反应器样品。 18S rRNA基因片段扩增子的分配表明,在选定的反应堆中,血球菌,小球藻和场景藻是最常见的三个微藻属。分离出代表性的藻类培养物后,用抗菌吡嗪进行药敏试验。已证明所有分离出的污染物都对生物活性化合物高度敏感。南美白对虾对烷基吡嗪的耐受性最高。溶液中必须含有1.66%(v / v)的活性化合物才能使其失活。用汽化的吡嗪进行的进一步测试显示,经处理的微藻的活力持续降低。这项初步研究为生物反应器去污的新颖,基于自然的替代方法的适用性提供了证据。

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