首页> 美国卫生研究院文献>Microorganisms >Isolation and Characterization of Euglena gracilis-Associated Bacteria Enterobacter sp. CA3 and Emticicia sp. CN5 Capable of Promoting the Growth and Paramylon Production of E. gracilis under Mixotrophic Cultivation
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Isolation and Characterization of Euglena gracilis-Associated Bacteria Enterobacter sp. CA3 and Emticicia sp. CN5 Capable of Promoting the Growth and Paramylon Production of E. gracilis under Mixotrophic Cultivation

机译:Euglena Gracilis相关细菌的分离与表征肠杆菌SP。 CA3和EmtiCicia SP。 CN5能够在混纺培养下促进E. Gracilis的生长和Paramenylon生产

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摘要

Euglena gracilis produces paramylon, which is a feedstock for high-value functional foods and nutritional supplements. The enhancement of paramylon productivity is a critical challenge. Microalgae growth-promoting bacteria (MGPB) can improve microalgal productivity; however, the MGPB for E. gracilis remain unclear. This study isolated bacteria capable of enhancing E. gracilis growth and paramylon production under mixotrophic conditions. Enterobacter sp. CA3 and Emticicia sp. CN5 were isolated from E. gracilis grown with sewage-effluent bacteria under mixotrophic conditions at pH 4.5 or 7.5, respectively. In a 7-day E. gracilis mixotrophic culture with glucose, CA3 increased E. gracilis biomass and paramylon production 1.8-fold and 3.5-fold, respectively (at pH 4.5), or 1.9-fold and 3.5-fold, respectively (at pH 7.5). CN5 increased E. gracilis biomass and paramylon production 2.0-fold and 4.1-fold, respectively (at pH 7.5). However, the strains did not show such effects on E. gracilis under autotrophic conditions without glucose. The results suggest that CA3 and CN5 promoted both E. gracilis growth and paramylon production under mixotrophic conditions with glucose at pH 4.5 and 7.5 (CA3) or pH 7.5 (CN5). This study also provides an isolation method for E. gracilis MGPB that enables the construction of an effective E. gracilis–MGPB-association system for increasing the paramylon yield of E. gracilis.
机译:Euglena Gracilis生产Paramentonon,这是一种用于高价值功能性食品和营养补充剂的原料。加强Paramenton生产力是一个关键挑战。微藻生长促进细菌(MGPB)可提高微观生产力;然而,E. Gracilis的MGPB仍然不清楚。本研究孤立的细菌能够在混合营养条件下增强Gracilis生长和Paramenton生产。 enterobacter sp。 CA3和EmtiCicia SP。在PH 4.5或7.5的混合营养条件下,从污水条件下的E. Gracilis中分离CN5。在7天的E. Gracilis Mixotrophic培养物中,Ca3分别增加了大肠杆菌生物量和Paramylon的生物量和Paramylon分别增加了1.8倍和3.5倍,分别为1.9倍和3.5倍(在pH下7.5)。 CN5分别增加了E. Gracilis生物量和Paramylon产量2.0倍和4.1倍(在pH7.5时)。然而,在没有葡萄糖的情况下,菌株在无葡萄糖的自养条件下没有显示出E. Gracilis的效果。结果表明,Ca 3和CN5在含有pH 4.5和7.5(Ca 3)或pH 7.5(CN5)的葡萄糖的混合营养条件下促进了Gracilis生长和Paramylon生产。该研究还提供了E. Gracilis MGPB的分离方法,其能够构建有效的E. Gracilis-MGPB-关联系统,用于增加E. Gracilis的Paramenynon产量。

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