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Multimodal Microorganism Development: Integrating Top-Down Biological Engineering with Bottom-Up Rational Design

机译:多模式微生物发展:与自下而上的理性设计整合自上而下的生物工程

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摘要

Biological engineering has unprecedented potential to solve society's most pressing challenges. Engineering approaches must consider complex technical, economic, and social factors. This requires methods that confer gene/pathway-level functionality and organism-level robustness in rapid and cost-effective ways. This article compares foundational engineering approaches - bottom-up, gene-targeted engineering, and top-down, whole-genome engineering - and identifies significant complementarity between them. Cases drawn from engineering Saccharomyces cerevisiae exemplify the synergy of a combined approach. Indeed, multimodal engineering streamlines strain development by leveraging the complementarity of whole-genome and gene-targeted engineering to overcome the gap in design knowledge that restricts rational design. As biological engineers target more complex systems, this dual-track approach is poised to become an increasingly important tool to realize the promise of synthetic biology.
机译:生物工程有前所未有的潜力来解决社会最紧迫的挑战。 工程方法必须考虑复杂的技术,经济和社会因素。 这需要以快速和成本效益的方式赋予基因/途径级功能和生物级鲁棒性的方法。 本文将基础工程方法 - 自下而上,基因靶向工程和自上而下,全基因组工程 - 并识别它们之间的显着互补性。 从工程酿酒酵母中汲取的案件涉及组合方法的协同作用。 实际上,多式化工程通过利用全基因组和基因目标工程的互补性来克服限制理性设计的设计知识的差距来简化应变发展。 作为生物学工程师的目标,这种双轨方法准备成为实现合成生物学承诺的越来越重要的工具。

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