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首页> 外文期刊>Journal of Applied Phycology >A novel culture medium for freshwater diatoms promotes efficient photoautotrophic batch production of biomass, fucoxanthin, and eicosapentaenoic acid
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A novel culture medium for freshwater diatoms promotes efficient photoautotrophic batch production of biomass, fucoxanthin, and eicosapentaenoic acid

机译:用于淡水硅藻的新型培养基促进了生物量,粪豆本黄芩,氟哌辛酸的有效光学营养批量生产

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摘要

Diatoms have recently emerged as new promising sources of fucoxanthin and eicosapentaenoic acid (EPA). Most applied studies in this area have focused on marine diatoms whereas the characterization of freshwater diatom metabolism has been restricted to ecophysiological studies. Here, we describe a novel culture medium for freshwater diatoms, the FDMed medium, and we demonstrate that it supports high biomass, fucoxanthin, and EPA production yields in photoautotrophic batch cultures of Sellaphora minima and Nitzschia palea. Growth was monitored for 21 days, fucoxanthin and EPA concentrations were assayed all along cultivation processes, and results were compared to those obtained for two other media (WC and Modified COMBO (MCOMBO)). The FDMed medium was found to increase biomass yields comparatively to MCOMBO medium (5-7-fold higher algal concentration at the stationary phase in S. minima and N. palea, respectively) while WC medium enables nearly no growth. The evolution of nitrate, silicate, and phosphate concentrations in culture media indicated a much better balance of macroelements in the FDMed medium. Fucoxanthin contents within the biomass remained very stable in the FDMed medium compared to the other media, in which it gradually decreases, and the best results (around 7.5 mg g(-1) dry weight ) were obtained for S. minima in the FDMed medium. EPA could only be measured in the FDMed medium and the highest content (14.0 mg EPA g(-1) dry weight) was recorded in N. palea. This work demonstrates the great industrial potential of freshwater diatoms and provides an efficient culture medium for those organisms.
机译:硅藻最近被出现为岩藻素和eicosapentaeno酸(EPA)的新有前景来源。该地区的大多数应用研究都集中在海洋硅藻上,而淡水硅藻代谢的表征已被限制为生态学研究。在这里,我们描述了一种用于淡水硅藻,FDMED培养基的新型培养基,并且我们证明它支持高生物量,粪豆本质和EPA产量的Sellaphora Minima和Nitzschia Palea的光学营养批量培养物。监测生长21天,野生素素和EPA浓度沿着培养方法测定,并将结果与​​另外两种培养基(WC和改性组合(Mcombo)进行比较。发现FDMED培养基将生物量增加对Mcombo培养基(分别在S. Minima和N.Pale的固定相的藻类浓度高5-7倍的藻类浓度)而WC培养基使得几乎没有生长。培养基中硝酸盐,硅酸盐和磷酸盐浓度的演变表明FDMED介质中的宏观重组的更好平衡。与其他培养基相比,生物质内的生物质内的岩浆素含量保持非常稳定,其逐渐降低,并且在FDMED介质中获得最佳结果(约7.5mg(-1)干重)。 。 EPA只能在FDMED培养基中测量,并在N.Palea中记录最高含量(14.0mg EPA G(-1)干重)。这项工作展示了淡水硅藻的巨大工业潜力,为这些生物提供了有效的培养基。

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