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Modeling the competition between antenna size mutant and wild type microalgae in outdoor mass culture

机译:模拟室外大规模培养中天线大小突变体与野生型微藻之间的竞争

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摘要

Under high light conditions, microalgae are oversaturated with light which significantly reduces the light use efficiency. Microalgae with a reduced pigment content, antenna size mutants, have been proposed as a potential solution to increase the light use efficiency. The goal of this study was to investigate the competition between antenna size mutants and wild type microalgae in mass cultures. Using a kinetic model and literature-derived experimental data from wild type Chlorella sorokiniana, the productivity and competition of wild type cells and antenna size mutants were simulated. Cultivation was simulated in an outdoor microalgal raceway pond production system which was assumed to be limited by light only. Light conditions were based on a Mediterranean location (Tunisia) and a more temperate location (the Netherlands). Several wild type contamination levels were simulated in each mutant culture separately to predict the effect on the productivity over the cultivation time of a hypothetical summer season of 100 days. The simulations demonstrate a good potential of antenna size reduction to increase the biomass productivity of microalgal cultures. However, it was also found that after a contamination with wild type cells the mutant cultures will be rapidly overgrown resulting in productivity loss. (C) 2016 Elsevier B.V. All rights reserved.
机译:在强光条件下,微藻类被光过饱和,这大大降低了光的利用效率。已经提出了具有减少的颜料含量的微藻类,天线尺寸突变体,作为增加光利用效率的潜在解决方案。这项研究的目的是调查大规模培养中触角大小突变体和野生型微藻之间的竞争。使用动力学模型和来自野生型小球藻的文献数据的实验数据,模拟了野生型细胞和触角大小突变体的生产力和竞争。在室外微藻类水道池塘生产系统中模拟了耕作过程,假定该系统仅受光的限制。光照条件基于地中海地区(突尼斯)和温带地区(荷兰)。在每种突变培养物中分别模拟了几种野生型污染水平,以预测假想的100天夏季在整个培养时间内对生产率的影响。该模拟表明减小天线尺寸以增加微藻培养物的生物质生产力的良好潜力。然而,还发现,在野生型细胞污染后,突变培养物将迅速生长过度,从而导致生产力下降。 (C)2016 Elsevier B.V.保留所有权利。

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