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Rational programming of history-dependent logic in cellular populations

机译:在蜂窝种群中历史依赖逻辑的Rational编程

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Genetic programs operating in a history-dependent fashion are ubiquitous in nature and govern sophisticated processes such as development and differentiation. The ability to systematically and predictably encode such programs would advance the engineering of synthetic organisms and ecosystems with rich signal processing abilities. Here we implement robust, scalable history-dependent programs by distributing the computational labor across a cellular population. Our design is based on standardized recombinase-driven DNA scaffolds expressing different genes according to the order of occurrence of inputs. These multicellular computing systems are highly modular, do not require cell-cell communication channels, and any program can be built by differential composition of strains containing well-characterized logic scaffolds. We developed automated workflows that researchers can use to streamline program design and optimization. We anticipate that the history-dependent programs presented here will support many applications using cellular populations for material engineering, biomanufacturing and healthcare. Automated frameworks to systematically implement robust history-dependent genetic programs in cellular populations.
机译:以历史依赖的方式运作的遗传计划在自然界中无处不在,管理复杂的过程,如开发和分化。系统地和可预测地编码这些计划的能力将推进具有丰富信号处理能力的合成生物和生态系统的工程。在这里,我们通过在蜂窝种群中分发计算劳动来实现强大的,可扩展的历史依赖计划。我们的设计基于标准化重组酶驱动的DNA支架,根据输入的发生顺序表达不同基因。这些多细胞计算系统是高模块化的,不需要细胞单元通信信道,并且任何程序都可以通过含有特征良好的逻辑支架的菌株的差异构成构成。我们开发了研究人员可以用于简化计划设计和优化的自动化工作流程。我们预计此处介绍的历史依赖计划将支持许多应用用于材料工程,生物制造和医疗保健的蜂窝群体。自动化框架,以系统地实施蜂窝种群中的鲁棒历史依赖性遗传程序。

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