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Bioprocess engineering of cell and tissue cultures for marineseaweeds

机译:海藻细胞和组织培养的生物过程工程

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Seaweeds are a rich source of valuable compounds including food additives and biomedicinals. The bioprocess engineering of marine macroalgae or 'seaweeds' for the production of these compounds is an emerging area of marine biotechnology. Bioprocess technology for marine macroalgae has three elements: cell and tissue culture development, photobioreactor design, and identification of strategies for eliciting secondary metabolite biosynthesis. In this paper, the first two elements are presented. Firstly, the development of phototrophic cell and tissue culture systems for representative species within brown, green, and red macroalgae is described. In vitro culture platforms include microscopic gametophytes, undifferentiated callus filaments, and 'microplantlets' regenerated from callus. Secondly, the controlled cultivation of these phototrophic culture systems in stirred tank, bubble column, airlift, and tubular photobioreactors is described. Limiting factors on biomass production in photobioreactors including light delivery, CO sub(2) transfer, and macronutrient delivery are compared. Finally, a mathematical model that integrates light delivery, CO sub(2) delivery, and macronutrient delivery into the material balance equations for biomass production in a perfusion bubble-column photobioreactor is presented, and model predictions are compared to biomass production data for microplantlet suspension cultures of the model red alga Agardhiella subulata.
机译:海藻是有价值的化合物的丰富来源,包括食品添加剂和生物医药。用于生产这些化合物的海洋大型藻类或“海藻”的生物过程工程是海洋生物技术的新兴领域。海洋大型藻类的生物工艺技术具有三个要素:细胞和组织培养的发展,光生物反应器的设计以及确定引发次级代谢物生物合成的策略。本文介绍了前两个元素。首先,描述了在棕色,绿色和红色大型藻类中代表物种的光养细胞和组织培养系统的发展。体外培养平台包括显微配子体,未分化的愈伤组织细丝和从愈伤组织再生的“微型植株”。其次,描述了在搅拌槽,鼓泡塔,气提和管状光生物反应器中这些光养培养系统的受控培养。比较了光生物反应器中生物量生产的限制因素,包括光传输,CO sub(2)传输和大量营养素传输。最后,提出了一个数学模型,该模型将光输送,CO sub(2)输送和大量营养素输送集成到了在灌注气泡-柱光生物反应器中用于生物量生产的材料平衡方程中,并将模型预测与微型植物悬浮液的生物量生产数据进行了比较红藻Agardhiella subulata的培养。

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