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Streamlining the Design-to-Build Transition with Build-Optimization Software Tools

机译:通过构建优化软件工具简化设计 - 构建转换

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Scaling-up capabilities for the design, build, and test of synthetic biology constructs holds great promise for the development of new applications in fuels, chemical production, or cellular-behavior engineering. Construct design is an essential component in this process; however, not every designed DNA sequence can be readily manufactured, even using state-of-the-art DNA synthesis methods. Current biological computer-aided design and manufacture tools (bioCAD/CAM) do not adequately consider the limitations of DNA synthesis technologies when generating their outputs. Designed sequences that violate DNA synthesis constraints may require substantial sequence redesign or lead to price-premiums and temporal delays, which adversely impact the efficiency of the DNA manufacturing process. We have developed a suite of build-optimization software tools (BOOST) to streamline the design build transition in synthetic biology engineering workflows. BOOST incorporates knowledge of DNA synthesis success determinants into the design process to output ready-to-build sequences, preempting the need for sequence redesign. The BOOST web application is available at https://boost.jgi.doe.gov and its Application Program Interfaces (API) enable integration into automated, customized DNA design processes. The herein presented results highlight the effectiveness of BOOST in reducing DNA synthesis costs and timelines.
机译:合成生物结构的设计,构建和测试的缩放能力对燃料,化学生产或蜂窝行为工程中的新应用的发展具有很大的承担。构造设计是该过程中的重要组成部分;然而,即使使用最先进的DNA合成方法,也可以容易地制造每个设计的DNA序列。目前的生物计算机辅助设计和制造工具(BioCAD / CAM)在产生输出时,不会充分考虑DNA合成技术的局限性。违反DNA合成约束的设计序列可能需要重新设计或导致价格溢价和时间延迟,这对DNA制造过程的效率产生不利影响。我们开发了一套构建优化软件工具(Boost),以简化综合生物工程工作流程中的设计构建转换。提升掺入DNA合成成功决定因素的知识进入设计过程以输出即可建立的序列,抢占序列重新设计的需求。 Boost Web应用程序可在https://boost.jgi.doe.gov及其应用程序接口(API)上获得,使集成到自动化的定制DNA设计过程中。本文呈现的结果突出了增强降低DNA合成成本和时间表的有效性。

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