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首页> 外文期刊>Biotechnology and Applied Biochemistry >Inoculation concentration modulating the secretion and accumulation pattern of exopolysaccharides in desert cyanobacterium Microcoleus vaginatus
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Inoculation concentration modulating the secretion and accumulation pattern of exopolysaccharides in desert cyanobacterium Microcoleus vaginatus

机译:接种浓度调节沙漠蓝杆菌迷路中外多糖的分泌和积累模式

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摘要

Cyanobacterial exopolysaccharides (EPS) accumulated during microalgal cultivation have significant application potential in antioxidation, pharmaceutical products, and so on. Inoculation concentration strongly affects the cultivation cost, biomass, and EPS accumulation. In this study, a high-EPS-excreted desert cyanobacterium Microcoleus vaginatus was isolated, and the effects of inoculation concentration on biomass, photosynthetic activity, and EPS accumulation were explored. The results showed that the original fluorescence (F-o) provided a good indication to cyanobacterial biomass, when Chl-a concentration was lower than 10 mg L-1. Inoculation concentration significantly affected cyanobacterial biomass and EPS concentration (P < 0.001), whereas did not affect photosynthetic activity (F-v/F-m; P > 0.05). The two fractions of EPS, capsular exopolysaccharides (CPS) and released exopolysaccharides (RPS) were strongly affect by inoculation concentration. Other than forming thick sheath (CPS) surrounded the filaments, M. vaginatus excreted higher proportions of RPS to culture medium, and the ratio of RPS to CPS ranged from 1.08 to 1.58 depending on the inoculation concentration. Additionally, although the biomass and EPS accumulation increased with inoculation concentration, the increasing inoculation concentration did not bring to the proportionate increase of the final biomass and EPS yield. Altogether, comprehensively considering the EPS yield and productivity, inoculation concentration of 0.04 mg Chl-a L-1 is recommended for M. vaginatus to produce EPS, with an EPS yield of 94.32 mg L-1 and EPS productivity of 184.86 mg (mg Chl-a)(-1) L-1 d(-1) at the end of experiment.
机译:微藻培养期间积聚的蓝藻外碳(EPS)具有抗氧化,药品等的显着应用潜力。接种浓度强烈影响培养成本,生物量和EPS积累。在这项研究中,分离了一种高eps排出的沙漠蓝藻魔法术,探讨了接种浓度对生物质,光合活性和eps积累的影响。结果表明,当CHL-A浓度低于10mg L-1时,原始荧光(F-O)为蓝藻生物质提供了良好的指示。接种浓度显着影响蓝藻生物量和EPS浓度(P <0.001),而不影响光合活性(F-V / F-M; P> 0.05)。通过接种浓度强烈地影响,通过接种浓度强烈地影响两种EPS,荚膜外多糖(CPS)和释放的外核(RPS)。除了形成厚的护套(CPS)围绕长丝,M.Vaginatus排出培养基的培养基比例更高,RP与CP的比例根据接种浓度为1.08至1.58。另外,虽然生物量和EPS积累随接种浓度而增加,但增加的接种浓度不会引起最终生物量和EPS产量的比例增加。全面考虑EPS产量和生产率,接种浓度为0.04mg CHL-A 1 -1,用于生产EPS,EPS产量为94.32mg L-1,EPS生产率为184.86mg(Mg CHL) -A)( - 1)L-1 D(-1)在实验结束时。

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