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A microfluidic photobioreactor array demonstrating high-throughput screening for microalgal oil production

机译:一种微流体光生物反应器阵列,展示了用于微藻油生产的高通量筛选

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摘要

Microalgae are envisioned as a future source of renewable oil. The feasibility of producing high-value biomolecules from microalgae is strongly dependent on developing strains with increased productivity and environmental tolerance, understanding algal gene regulation, and optimizing growth conditions for higher production of target molecules. We present a high-throughput microfluidic microalgal photobioreactor array capable of applying 64 different light conditions to arrays of microscale algal photobioreactors and apply this device to investigate how light conditions influence algal growth and oil production. Using the green colony-forming microalga Botryococcus braunii, the light intensity and light-dark cycle conditions were identified that induced 1.8-fold higher oil accumulation over the typically used culture conditions. Additionally, the studies revealed that the condition under which maximum oil production occurs is significantly different from that of maximum growth. This screening test was accomplished using the developed photobioreactor array at 250 times higher throughput compared to conventional flask-scale photobioreactors.
机译:微藻被设想为可再生石油的未来来源。由微藻生产高价值生物分子的可行性在很大程度上取决于开发具有提高的生产率和环境耐受性的菌株,了解藻类基因调控以及优化生长条件以提高目标分子的产量。我们提出了一种高通量微流控微藻类光生物反应器阵列,该阵列能够将64种不同的光照条件应用于微尺度藻类光生物反应器阵列,并应用该设备来研究光照条件如何影响藻类生长和产油。使用绿色菌落形成的微藻Botryococcus braunii,鉴定出光强度和光-暗循环条件,它们诱导的油积累比通常使用的培养条件高1.8倍。另外,研究表明,最大产油的条件与最大增长的条件显着不同。使用开发的光生物反应器阵列完成此筛选测试,其吞吐量是传统烧瓶规模光生物反应器的250倍。

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