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首页> 外文期刊>Applied Microbiology and Biotechnology >Diatom cultivation and biotechnologically relevant products. Part I: Cultivation at various scales [Review]
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Diatom cultivation and biotechnologically relevant products. Part I: Cultivation at various scales [Review]

机译:硅藻栽培和生物技术相关产品。第一部分:各种规模的耕作[综述]

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Biotechnological applications of diatoms are still in development. Further development at the industrial scale will depend on optimisation of the culture process with the aim of reducing costs. Because of the photoautotrophic status of the majority of diatoms, microalgal cultures suffer from the limitation of light diffusion, which requires the development of suitable photobioreactors. Thus, genetically engineered microalgae that may be cultivated in heterotrophic conditions present a new opportunity. Other limiting factors, such as nutrients (phosphate, nitrogen, silicon), pH, temperature, bioturbation and many more must be taken into account. Most of the time, metabolic stress conditions lead to an overproduction of the products of interest, with a decrease in biomass production as a consequence. Outdoor cultures in open ponds are usually devoted to aquaculture for the feeding of shrimps and bivalve molluscs (commercial production), while closed axenic indoor/outdoor photobioreactors are used for biotechnological compounds of homogeneous composition (still at the laboratory scale). In addition to the optimum culture conditions that have to be taken into account for photobioreactor design, the localisation of produced metabolites (intra- or extracellular) may also be taken into account when choosing the design. Microalgal cell immobilisation may be a suitable technique for application to benthic diatoms, which are usually sensitive to bioturbation and/or metabolites which may be overexpressed. [References: 103]
机译:硅藻的生物技术应用仍在开发中。工业规模的进一步发展将取决于培养过程的优化,以降低成本。由于大多数硅藻的光自养状态,微藻培养物受光扩散的限制,这需要开发合适的光生物反应器。因此,可以在异养条件下培养的基因工程微藻提供了新的机会。必须考虑其他限制因素,例如营养素(磷酸盐,氮,硅),pH,温度,生物扰动等。在大多数情况下,代谢应激条件会导致目标产品的生产过剩,从而导致生物量生产下降。开阔池塘的户外养殖通常专门用于水产养殖,以养成虾和双壳软体动物(商业化生产),而封闭式无菌室内/室外光生物反应器用于组成均质的生物技术化合物(仍处于实验室规模)。除了光生物反应器设计必须考虑的最佳培养条件外,在选择设计时还应考虑产生的代谢产物(细胞内或细胞外)的定位。固定微藻细胞可能是适用于底栖硅藻的合适技术,底栖硅藻通常对可能过度表达的生物扰动和/或代谢产物敏感。 [参考:103]

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