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CO2-limitation-inducible Green Recovery of fatty acids from cyanobacterial biomass

机译:CO2限制诱导的绿色从蓝藻生物质中回收脂肪酸

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摘要

Using genetically modified cyanobacterial strains, we engineered a Green Recovery strategy to convert membrane lipids into fatty acids for economical and environmentally sustainable biofuel production. The Green Recovery strategy utilizes lipolytic enzymes under the control of promoters induced by CO2 limitation. Data indicate that strains of the cyanobacterium Synechocystis sp. PCC6803 engineered for Green Recovery underwent degradation of membrane diacylglycerols upon CO2 limitation, leading to release of fatty acids into the culture medium. Recovered fatty acid yields of 36.1 × 10-12 mg/cell were measured in one of the engineered strains (SD239). Green Recovery can be incorporated into previously constructed fatty-acid-secretion strains, enabling fatty acid recovery from the remaining cyanobacterial biomass that will be generated during fatty acid biofuel production in photobioreactors.
机译:使用转基因的蓝细菌菌株,我们设计了一种绿色回收策略,可将膜脂转化为脂肪酸,从而经济且环境可持续地生产生物燃料。绿色恢复策略在由CO2限制诱导的启动子的控制下利用脂肪分解酶。数据表明,蓝藻蓝藻属菌株。经过CO2限制,专为绿色回收而设计的PCC6803经历了膜二酰甘油的降解,导致脂肪酸释放到培养基中。在其中一种工程菌株(SD239)中测得的回收脂肪酸产量为36.1×10 -12 mg /细胞。可以将Green Recovery掺入先前构建的脂肪酸分泌菌株中,从而实现从剩余的蓝藻生物质中回收脂肪酸,该残留生物质将在光生物反应器中生产脂肪酸生物燃料时产生。

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