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定制连续微藻生产中生物质组成的模型。

A model for customising biomass composition in continuous microalgae production.

机构信息

Bioprocess Engineering, AlgaePARC, Wageningen University, PO Box 8129, 6700 EV Wageningen, The Netherlands; Wetsus - Center of Excellence for Sustainable Water Technology, PO Box 1113, 8900 CC Leeuwarden, The Netherlands.

Bioprocess Engineering, AlgaePARC, Wageningen University, PO Box 8129, 6700 EV Wageningen, The Netherlands.

出版信息

Bioresour Technol. 2013 Oct;146:89-100. doi: 10.1016/j.biortech.2013.07.039. Epub 2013 Jul 18.

Abstract

A kinetic model is presented that describes functional biomass, starch and storage lipid (TAG) synthesis in the microalga Neochloris oleoabundans as a function of nitrogen and light supply rates to a nitrogen-limited turbidostat cultivation system. The model is based on the measured electron distribution in N. oleoabundans, which showed that starch is the primary storage component, whereas TAG was only produced after an excess of electrons was generated, when growth was limited by nitrogen supply. A fixed 8.6% of the excess electrons ended up in TAG, suggesting close metabolic interactions between nitrogen assimilation and TAG accumulation, such as a shared electron pool. The proposed model shows that by manipulating the cultivation conditions in a light or nitrogen limited turbidostat, algal biomass composition can be customised and the volumetric productivities and yields of the major biomass constituents can be changed on demand.

摘要

提出了一个动力学模型,用于描述微藻 Neochloris oleoabundans 中功能生物量、淀粉和储存脂质(TAG)的合成,作为氮和光供应率对氮限制的浊度计培养系统的函数。该模型基于对 N. oleoabundans 中电子分布的测量,结果表明淀粉是主要的储存成分,而 TAG 仅在过量电子产生后才会产生,此时生长受到氮供应的限制。多余的电子中有 8.6%固定在 TAG 中,这表明氮同化和 TAG 积累之间存在密切的代谢相互作用,例如共享电子池。所提出的模型表明,通过在光或氮限制的浊度计中操纵培养条件,可以定制藻类生物量的组成,并根据需要改变主要生物质成分的比生产率和产率。

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