Zymergen Inc., 5980 Horton Street, Suite #105, Emeryville, CA, 94608, USA.
J Ind Microbiol Biotechnol. 2020 Nov;47(11):913-927. doi: 10.1007/s10295-020-02295-3. Epub 2020 Aug 2.
While design and high-throughput build approaches in biotechnology have increasingly gained attention over the past decade, approaches to test strain performance in high-throughput have received less discussion in the literature. Here, we describe how fermentation characterization can be used to improve the overall efficiency of high-throughput DBTAL (design-build-test-analyze-learn) cycles in an industrial context. Fermentation characterization comprises an in-depth study of strain performance in a bioreactor setting and involves semi-frequent sampling and analytical measurement of substrates, cell densities and viabilities, and (by)products. We describe how fermentation characterization can be used to (1) improve (high-throughput) strain design approaches; (2) enable the development of bench-scale fermentation processes compatible with a wide diversity of strains; and (3) inform the development of high-throughput plate-based strain testing procedures for improved performance at larger scales.
虽然生物技术中的设计和高通量构建方法在过去十年中受到了越来越多的关注,但在文献中,高通量测试菌株性能的方法讨论较少。在这里,我们描述了如何在工业环境中使用发酵特性来提高高通量 DBTAL(设计-构建-测试-分析-学习)循环的整体效率。发酵特性包括在生物反应器环境中对菌株性能进行深入研究,涉及对底物、细胞密度和活力以及(副)产物进行半频繁采样和分析测量。我们描述了如何使用发酵特性来(1)改进(高通量)菌株设计方法;(2)实现与广泛菌株兼容的台式发酵工艺的开发;以及(3)为在更大规模上提高性能而开发高通量基于平板的菌株测试程序提供信息。