首页> 美国卫生研究院文献>Biotechnology for Biofuels >Application of an in situ CO2–bicarbonate system under nitrogen depletion to improve photosynthetic biomass and starch production and regulate amylose accumulation in a marine green microalga Tetraselmis subcordiformis
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Application of an in situ CO2–bicarbonate system under nitrogen depletion to improve photosynthetic biomass and starch production and regulate amylose accumulation in a marine green microalga Tetraselmis subcordiformis

机译:氮耗减下原位CO2-碳酸氢盐系统的应用以改善海洋绿色微藻拟南芥中的光合生物量和淀粉产量并调节直链淀粉的积累

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摘要

BackgroundMicroalgal starch is regarded as a promising alternative to crop-based starch for biorefinery such as the production of biofuels and bio-based chemicals. The single or separate use of inorganic carbon source, e.g., CO2 and NaHCO3, caused aberrant pH, which restricts the biomass and starch production. The present study applied an in situ CO2–NaHCO3 system to regulate photosynthetic biomass and starch production along with starch quality in a marine green microalga Tetraselmis subcordiformis under nitrogen-depletion (−N) and nitrogen-limitation (±N) conditions.
机译:背景技术微藻淀粉被认为是用于生物精炼(例如生产生物燃料和生物基化学品)的农作物淀粉的有前途的替代品。单独或单独使用无机碳源(例如CO2和NaHCO3)会导致pH异常,从而限制了生物质和淀粉的生产。本研究应用了原位CO2–NaHCO3系统来调节氮素(-N)和氮素限制(±N)条件下海洋绿色微藻次生球状藻(Tetraselmis subcordiformis)的光合生物量和淀粉产量以及淀粉质量。

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