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A model for improving microbial biofuel production using a synthetic feedback loop

机译:使用合成反馈回路改善微生物生物燃料生产的模型

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Cells use feedback to implement a diverse range of regulatory functions. Building synthetic feedback control systems may yield insight into the roles that feedback can play in regulation since it can be introduced independently of native regulation, and alternative control architectures can be compared. We propose a model for microbial biofuel production where a synthetic control system is used to increase cell viability and biofuel yields. Although microbes can be engineered to produce biofuels, the fuels are often toxic to cell growth, creating a negative feedback loop that limits biofuel production. These toxic effects may be mitigated by expressing efflux pumps that export biofuel from the cell. We developed a model for cell growth and biofuel production and used it to compare several genetic control strategies for their ability to improve biofuel yields. We show that controlling efflux pump expression directly with a biofuel-responsive promoter is a straightforward way of improving biofuel production. In addition, a feed forward loop controller is shown to be versatile at dealing with uncertainty in biofuel production rates.
机译:单元使用反馈来实现各种调节功能。建立综合反馈控制系统可能会深入了解反馈在调节中所起的作用,因为它可以独立于本机调节引入,并且可以比较其他控制体系结构。我们提出了一种微生物生物燃料生产模型,其中使用了一个综合控制系统来提高细胞活力和生物燃料产量。尽管可以对微生物进行改造以生产生物燃料,但这些燃料通常对细胞生长有毒,从而形成了限制生物燃料生产的负反馈回路。这些毒性作用可以通过表达从细胞中输出生物燃料的外排泵来减轻。我们为细胞生长和生物燃料生产开发了一个模型,并使用该模型比较了几种基因控制策略提高生物燃料产量的能力。我们表明,直接控制具有生物燃料响应性启动子的外排泵表达是提高生物燃料产量的直接方法。另外,前馈回路控制器在处理生物燃料生产率的不确定性方面具有多种用途。

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