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Confidence, tolerance, and allowance in biological engineering: The nuts and bolts of living things

机译:对生物工程的信心,宽容和宽容:生物的基本要素

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The emphasis of systems and synthetic biology on quantitative understanding of biological objects and their eventual re-design has raised the question of whether description and construction standards that are commonplace in electric and mechanical engineering are applicable to live systems. The tuning of genetic devices to deliver a given activity is generally context-dependent, thereby undermining the re-usability of parts, and predictability of function, necessary for manufacturing new biological objects. Tolerance (acceptable limits within the unavoidable divergence of a nominal value) and allowance (deviation introduced on purpose for the sake of flexibility and hence modularity, i.e. fitting together with a variety of other components) are key aspects of standardization that need to be brought to biological design. These should endow functional building blocks with a pre-specified level of confidence for bespoke biosystems engineering. However, in the absence of more fundamental knowledge, fine-tuning necessarily relies on evolutionary/combinatorial gravitation toward a fixed objective.
机译:系统和合成生物学对生物对象的定量理解及其最终重新设计的强调提出了一个问题,即在电气和机械工程中很常见的描述和构造标准是否适用于带电系统。调节遗传装置以提供给定的活性通常取决于上下文,从而破坏了部件的可重复使用性以及功能的可预测性,而这些对于制造新的生物物体是必需的。公差(标称值不可避免的偏差之内的可接受限制)和公差(为了灵活性和模块化而故意引入偏差,即与各种其他组件配合使用)是标准化的关键方面生物设计。这些应该为功能性构建块赋予定制生物系统工程预定的置信度。但是,在缺乏更多基础知识的情况下,微调必然依赖于朝着固定目标的进化/组合引力。

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