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BSim: An Agent-Based Tool for Modeling Bacterial Populations in Systems and Synthetic Biology

机译:BsIm:一种基于agent的工具建模细菌种群系统和合成生物学

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摘要

Large-scale collective behaviors such as synchronization and coordination spontaneously arise in many bacterial populations. With systems biology attempting to understand these phenomena, and synthetic biology opening up the possibility of engineering them for our own benefit, there is growing interest in how bacterial populations are best modeled. Here we introduce BSim, a highly flexible agent-based computational tool for analyzing the relationships between single-cell dynamics and population level features. BSim includes reference implementations of many bacterial traits to enable the quick development of new models partially built from existing ones. Unlike existing modeling tools, BSim fully considers spatial aspects of a model allowing for the description of intricate micro-scale structures, enabling the modeling of bacterial behavior in more realistic three-dimensional, complex environments. The new opportunities that BSim opens are illustrated through several diverse examples covering: spatial multicellular computing, modeling complex environments, population dynamics of the lac operon, and the synchronization of genetic oscillators. BSim is open source software that is freely available from and distributed under the Open Source Initiative (OSI) recognized MIT license. Developer documentation and a wide range of example simulations are also available from the website. BSim requires Java version 1.6 or higher.
机译:在许多细菌种群中,自然而然地出现了诸如同步和协调之类的大规模集体行为。随着系统生物学试图理解这些现象,而合成生物学为我们自己的利益开辟了对其进行工程化的可能性,人们对如何最好地模拟细菌种群的兴趣日益浓厚。在这里,我们介绍BSim,这是一种高度灵活的基于代理的计算工具,用于分析单细胞动力学和种群水平特征之间的关系。 BSim包括许多细菌性状的参考实现,以能够快速开发从现有模型部分构建的新模型。与现有的建模工具不同,BSim充分考虑了模型的空间方面,允许描述复杂的微观结构,从而可以在更现实的三维复杂环境中对细菌行为进行建模。 BSim带来的新机遇通过以下几个不同的例子进行了说明:空间多细胞计算,复杂环境建模,紫胶操纵子的种群动态以及遗传振荡器的同步。 BSim是一种开放源代码软件,可以从开放源代码倡议(OSI)认可的MIT许可中免费获得和分发。网站上也提供了开发人员文档和大量示例仿真。 BSim需要Java 1.6或更高版本。

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