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首页> 外文期刊>Journal of applied microbiology >Increased synthesis of a-tocopherol, paramylon and tyrosine by Euglena gracilis under conditions of high biomass production
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Increased synthesis of a-tocopherol, paramylon and tyrosine by Euglena gracilis under conditions of high biomass production

机译:在高生物量生产条件下,Euglena gracilis增加了α-生育酚,副甲酰胺和酪氨酸的合成

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AbstractAims: To analyse the production of different metabolites by dark-grown Euglena gracilis under conditions found to render high cell growth.Methods and Results: The combination of glutamate (5 g l-1), malate (2 g l-1) and ethanol (10 ml l-1) (GM + EtOH); glutamate (7.15 g l-1) and ethanol (10 ml l-1); or malate (8.16 g l-1), glucose (10.6 g l-1) and NH4Cl (1.8 g l-1) as carbon and nitrogen sources, promoted an increase of 5.6, 3.7 and 2.6-fold, respectively, in biomass concentration in comparison with glutamate and malate (GM). In turn, the production of a-tocopherol after 120 h identified by LC-MS was 3.7 c 0.2, 2.4 c 0.1 and 2 c 0.1 mg [g dry weight (DW)]-1, respectively, while in the control medium (GM) it was 0.72 c 0.1 mg (g DW)-1. For paramylon synthesis, the addition of EtOH or glucose induced a higher production. Amino acids were assayed by RP-HPLC; Tyr a tocopherol precursor and Ala an amino acid with antioxidant activity were the amino acids synthesized at higher concentration.Conclusions: Dark-grown E. gracilis Z is a suitable source for the generation of the biotechnologically relevant metabolites tyrosine, a-tocopherol and paramylon.Significance and Impact of the Study: By combining different carbon and nitrogen sources and inducing a tolerable stress to the cell by adding ethanol, it was possible to increase the production of biomass, paramylon, a-tocopherol and some amino acids. The concentrations of a-tocopherol achieved in this study are higher than others reported previously for Euglena, plant and algal systems. This work helps to understand the effect of different carbon sources on the synthesis of bio-molecules by E. gracilis and can be used as a basis for future works to improve the production of different metabolites of biotechnological importance by this organism.
机译:摘要目的:分析在一定条件下能产生高细胞生长的暗生细叶藻(Euglena gracilis)产生不同代谢产物的方法和结果:谷氨酸(5 g l-1),苹果酸(2 g l-1)和乙醇的组合(10 ml -1)(GM +乙醇);谷氨酸(7.15 g l-1)和乙醇(10 ml l-1);或碳酸盐和氮源的苹果酸(8.16 g l-1),葡萄糖(10.6 g l-1)和NH4Cl(1.8 g l-1)分别使生物质浓度增加了5.6倍,3.7倍和2.6倍与谷氨酸和苹果酸(GM)相比。反过来,在对照培养基(GM)中,通过LC-MS鉴定,α-生育酚在120 h后的产量分别为3.7 c 0.2、2.4 c 0.1和2 c 0.1 mg [g干重(DW)]-1。 )为0.72 c 0.1 mg(g DW)-1。对于副mylon合成,添加EtOH或葡萄糖可诱导更高的产量。氨基酸通过RP-HPLC测定。生育酚前体Tyr和具有抗氧化活性的Ala氨基酸是高浓度合成的氨基酸。该研究的意义和影响:通过组合不同的碳源和氮源,并通过添加乙醇对细胞产生可忍受的压力,有可能增加生物量,副mylon,α-生育酚和某些氨基酸的产量。在这项研究中,α-生育酚的浓度高于先前针对裸藻,植物和藻类系统报道的浓度。这项工作有助于了解不同碳源对细粒肠球菌生物分子合成的影响,并可作为未来工作的基础,以改进该生物体对具有重要生物技术意义的不同代谢产物的生产。

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