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Tropho-metabolic transition during Chlorella sp cultivation on synthesis of biodiesel

机译:小球藻培养过程中生物柴油合成过程中的营养代谢转变

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Mixotrophic and heterotrophic cultivation modes were studied for enhancing the biomass and lipid productivities using light and carbon as critical factors. The adaptability of the newly isolated Chlorella sp towards transition from mixotrophic to heterotrophic cultivation mode was evaluated. Organic carbon illustrated higher affinity towards both biomass and lipid productivities. Specific changes in fatty acid profile were observed with respect to trophic condition. Maximum biomass productivity (4.21 g/l) and relatively higher lipid productivity (107.3 g/kg of DCW) was observed with mixotrophic (MXG) condition while heterotrophic mode showed higher lipid content (28.9%). Higher carbohydrate content (943 mg/g DCW) was observed in mixotrophic mode and maximum protein content (450 mg/g DCW) was obtained with heterotrophic condition. The synergism between total lipid content, fatty acid composition and biomass productivities during trophic transition was critically evaluated. The transition between the trophic modes have given deeper insights into the metabolic partitioning of carbon in photosynthetic and respiratory pathways during synthesis of biodiesel precursors. Mining of bio-based products from microalgae can create more sustainable economies and integrated approach will add paybacks to process signifying algal based biorefinery model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了以光和碳为关键因素的混合营养和异养培养模式,以提高生物量和脂质生产力。评估了新分离的小球藻从混合营养到异养培养模式的适应性。有机碳显示出对生物量和脂质生产率的更高亲和力。关于营养状况,观察到脂肪酸谱的特定变化。在混合营养(MXG)条件下观察到最大生物量生产力(4.21 g / l)和相对较高的脂质生产力(107.3 g / kg DCW),而异养模式显示较高的脂质含量(28.9%)。在混合营养模式下观察到较高的碳水化合物含量(943 mg / g DCW),在异养条件下获得最大蛋白质含量(450 mg / g DCW)。营养过渡期间总脂质含量,脂肪酸组成和生物量生产力之间的协同作用进行了严格评估。营养模式之间的过渡使人们对生物柴油前体合成过程中光合作用和呼吸途径中碳的代谢分配有了更深入的了解。从微藻类开采生物基产品可以创造更多的可持续性经济,而综合方法将为基于标志性藻类的生物精炼厂模型增加投资回报。 (C)2016 Elsevier Ltd.保留所有权利。

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