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Light-optimized growth of cyanobacterial cultures: Growth phases and productivity of biomass and secreted molecules in light-limited batch growth

机译:浅层优化的蓝藻培养生长:生物量的生长阶段和生产率和分泌分子的批量生产

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摘要

Cyanobacteria are photosynthetic microorganisms whose metabolism can be modified through genetic engineering for production of a wide variety of molecules directly from CO2, light, and nutrients. Diverse molecules have been produced in small quantities by engineered cyanobacteria to demonstrate the feasibility of photosynthetic biorefineries. Consequently, there is interest in engineering these microorganisms to increase titer and productivity to meet industrial metrics. Unfortunately, differing experimental conditions and cultivation techniques confound comparisons of strains and metabolic engineering strategies. In this work, we discuss the factors governing photoautotrophic growth and demonstrate nutritionally replete conditions in which a model cyanobacterium can be grown to stationary phase with light as the sole limiting substrate. We introduce a mathematical framework for understanding the dynamics of growth and product secretion in light-limited cyanobacterial cultures. Using this framework, we demonstrate how cyanobacterial growth in differing experimental systems can be easily scaled by the volumetric photon delivery rate using the model organisms Synechococcus sp. strain PCC7002 and Synechococcus elongates strain UTEX2973. We use this framework to predict scaled up growth and product secretion in 1L photobioreactors of two strains of Synechococcus PCC7002 engineered for production of c-lactate or c-lysine. The analytical framework developed in this work serves as a guide for future metabolic engineering studies of cyanobacteria to allow better comparison of experiments performed in different experimental systems and to further investigate the dynamics of growth and product secretion.
机译:蓝藻是光合微生物,其代谢可以通过基因工程来修改,用于直接来自CO2,光和营养素的各种分子。通过工程的蓝杆菌少量生产各种分子,以证明光合生物档案的可行性。因此,有利于工程这些微生物,以提高措施和生产力以满足工业指标。不幸的是,不同的实验条件和栽培技术诱导菌株和代谢工程策略的比较。在这项工作中,我们讨论了控制光学营养生长的因素,并证明了营养型新鲜条件,其中可以用光作为鞋底限制基板生长为固定相的模型蓝杆菌。我们介绍了一种数学框架,以了解在有限的蓝藻培养物中的生长和产品分泌的动态。使用本框架,我们展示了使用模型生物体SneCeChococcus SP的体积光子输送率可以容易地缩放不同实验系统中的蓝细菌生长。菌株PCC7002和SyneChoccus伸长菌株UTEX2973。我们使用该框架来预测缩放的增长和产物分泌物,在1L PhotoCioreActors的两个菌株的SneCeChocccus PCC7002中用于生产C-乳酸或C-赖氨酸。本工作中开发的分析框架是Cyanobacteria未来代谢工程研究的指南,以便更好地比较不同实验系统中进行的实验,并进一步研究生长和产物分泌的动态。

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