Auckland Bioengineering Institute, University of Auckland, Auckland, New Zealand.
Bioinformatics. 2010 Apr 1;26(7):925-31. doi: 10.1093/bioinformatics/btq063. Epub 2010 Feb 16.
Fabrication of synthetic biological systems is greatly enhanced by incorporating engineering design principles and techniques such as computer-aided design. To this end, the ongoing standardization of biological parts presents an opportunity to develop libraries of standard virtual parts in the form of mathematical models that can be combined to inform system design.
We present an online Repository, populated with a collection of standardized models that can readily be recombined to model different biological systems using the inherent modularity support of the CellML 1.1 model exchange format. The applicability of this approach is demonstrated by modeling gold-medal winning iGEM machines.
The Repository is available online as part of http://models.cellml.org. We hope to stimulate the worldwide community to reuse and extend the models therein, and contribute to the Repository of Standard Virtual Parts thus founded. Systems Model architecture information for the Systems Model described here, along with an additional example and a tutorial, is also available as Supplementary information. The example Systems Model from this manuscript can be found at http://models.cellml.org/workspace/bugbuster. The Template models used in the example can be found at http://models.cellml.org/workspace/SVP_Templates200906.
通过将工程设计原则和技术(如计算机辅助设计)纳入合成生物系统的制造中,可以大大提高其效率。为此,正在进行的生物部件标准化为开发以数学模型形式表示的标准虚拟部件库提供了机会,这些模型可以组合使用,为系统设计提供信息。
我们展示了一个在线存储库,其中包含了一系列标准化模型,这些模型可以使用 CellML 1.1 模型交换格式的固有模块支持进行重新组合,以对不同的生物系统进行建模。通过对金牌 iGEM 机器进行建模,证明了这种方法的适用性。
该存储库可在线获取,是 http://models.cellml.org 的一部分。我们希望激发全球社区对其中模型进行再利用和扩展,并为此基础上建立的标准虚拟部件库做出贡献。本文中描述的系统模型的系统模型体系结构信息,以及一个附加示例和教程,也可作为补充信息获取。本文中的示例系统模型可以在 http://models.cellml.org/workspace/bugbuster 找到。示例中使用的模板模型可以在 http://models.cellml.org/workspace/SVP_Templates200906 找到。