Synthetic biology open language (SBOL) version 3.1.0

IF 1.5 Q3 MATHEMATICAL & COMPUTATIONAL BIOLOGY
Lukas Buecherl, Tom Mitchell, James Scott-Brown, P. Vaidyanathan, Gonzalo Vidal, Hasan Baig, Bryan A. Bartley, Jacob Beal, Matthew Crowther, P. Fontanarrosa, T. Gorochowski, Raik Grünberg, V. Kulkarni, James Alastair McLaughlin, Goksel Misirli, Ernst Oberortner, A. Wipat, C. Myers
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引用次数: 3

Abstract

Abstract Synthetic biology builds upon genetics, molecular biology, and metabolic engineering by applying engineering principles to the design of biological systems. When designing a synthetic system, synthetic biologists need to exchange information about multiple types of molecules, the intended behavior of the system, and actual experimental measurements. The Synthetic Biology Open Language (SBOL) has been developed as a standard to support the specification and exchange of biological design information in synthetic biology, following an open community process involving both bench scientists and scientific modelers and software developers, across academia, industry, and other institutions. This document describes SBOL 3.1.0, which improves on version 3.0.0 by including a number of corrections and clarifications as well as several other updates and enhancements. First, this version includes a complete set of validation rules for checking whether documents are valid SBOL 3. Second, the best practices section has been moved to an online repository that allows for more rapid and interactive of sharing these conventions. Third, it includes updates based upon six community approved enhancement proposals. Two enhancement proposals are related to the representation of an object’s namespace. In particular, the Namespace class has been removed and replaced with a namespace property on each class. Another enhancement is the generalization of the CombinatorialDeriviation class to allow direct use of Features and Measures. Next, the Participation class now allow Interactions to be participants to describe higher-order interactions. Another change is the use of Sequence Ontology terms for Feature orientation. Finally, this version of SBOL has generalized from using Unique Reference Identifiers (URIs) to Internationalized Resource Identifiers (IRIs) to support international character sets.
合成生物学开放语言(SBOL)3.1.0版
合成生物学建立在遗传学、分子生物学和代谢工程的基础上,将工程原理应用于生物系统的设计。当设计一个合成系统时,合成生物学家需要交换关于多种类型分子的信息,系统的预期行为和实际的实验测量。合成生物学开放语言(SBOL)已被开发为支持合成生物学中生物设计信息的规范和交换的标准,它遵循一个开放的社区过程,涉及学术界、工业界和其他机构的实验科学家、科学建模者和软件开发人员。本文描述了SBOL 3.1.0,它在版本3.0.0的基础上进行了改进,包括许多更正和说明以及其他一些更新和增强。首先,这个版本包括一套完整的验证规则,用于检查文档是否为有效的SBOL 3。其次,最佳实践部分已经转移到一个在线存储库中,该存储库允许更快速和交互式地共享这些约定。第三,它包含基于六个社区批准的增强建议的更新。两个增强建议与对象名称空间的表示有关。特别是,Namespace类已经被移除,并被每个类上的Namespace属性所取代。另一个增强是组合导数类的泛化,允许直接使用特征和度量。接下来,Participation类现在允许Interactions成为描述高阶交互的参与者。另一个变化是使用序列本体术语进行特征定位。最后,这个版本的SBOL已经从使用唯一引用标识符(uri)推广到使用国际化资源标识符(IRIs)来支持国际字符集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Integrative Bioinformatics
Journal of Integrative Bioinformatics Medicine-Medicine (all)
CiteScore
3.10
自引率
5.30%
发文量
27
审稿时长
12 weeks
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