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用于生物电路设计的多标准全局优化

Multicriteria global optimization for biocircuit design.

作者信息

Otero-Muras Irene, Banga Julio R

出版信息

BMC Syst Biol. 2014 Sep 24;8:113. doi: 10.1186/s12918-014-0113-3.

Abstract

BACKGROUND

One of the challenges in Synthetic Biology is to design circuits with increasing levels of complexity. While circuits in Biology are complex and subject to natural tradeoffs, most synthetic circuits are simple in terms of the number of regulatory regions, and have been designed to meet a single design criterion.

RESULTS

In this contribution we introduce a multiobjective formulation for the design of biocircuits. We set up the basis for an advanced optimization tool for the modular and systematic design of biocircuits capable of handling high levels of complexity and multiple design criteria. Our methodology combines the efficiency of global Mixed Integer Nonlinear Programming solvers with multiobjective optimization techniques. Through a number of examples we show the capability of the method to generate non intuitive designs with a desired functionality setting up a priori the desired level of complexity.

CONCLUSIONS

The methodology presented here can be used for biocircuit design and also to explore and identify different design principles for synthetic gene circuits. The presence of more than one competing objective provides a realistic design setting where every solution represents an optimal trade-off between different criteria.

摘要

背景

合成生物学面临的挑战之一是设计复杂度不断增加的电路。虽然生物电路复杂且存在自然权衡,但大多数合成电路在调控区域数量方面较为简单,并且是为满足单一设计标准而设计的。

结果

在本论文中,我们引入了一种用于生物电路设计的多目标公式。我们为一种先进的优化工具奠定了基础,该工具用于生物电路的模块化和系统化设计,能够处理高度复杂性和多个设计标准。我们的方法将全局混合整数非线性规划求解器的效率与多目标优化技术相结合。通过多个示例,我们展示了该方法生成具有所需功能的非直观设计的能力,先验地设定所需的复杂程度。

结论

这里提出的方法可用于生物电路设计,也可用于探索和识别合成基因电路的不同设计原则。多个相互竞争目标的存在提供了一个现实的设计环境,其中每个解决方案都代表了不同标准之间的最优权衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88c8/4180256/a6bc39ebc05d/12918_2014_113_Fig1_HTML.jpg

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