Key Laboratory of Systems Microbial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China.
Commun Biol. 2021 May 31;4(1):647. doi: 10.1038/s42003-021-02186-y.
Streptomyces are one of the most important industrial microorganisms for the production of proteins and small-molecule drugs. Previously reported flow cytometry-based screening methods can only screen spores or protoplasts released from mycelium, which do not represent the filamentous stationary phase Streptomyces used in industrial cultivation. Here we show a droplet-based microfluidic platform to facilitate more relevant, reliable and rapid screening of Streptomyces mycelium, and achieved an enrichment ratio of up to 334.2. Using this platform, we rapidly characterized a series of native and heterologous constitutive promoters in Streptomyces lividans 66 in droplets, and efficiently screened out a set of engineered promoter variants with desired strengths from two synthetic promoter libraries. We also successfully screened out several hyperproducers of cellulases from a random S. lividans 66 mutant library, which had 69.2-111.4% greater cellulase production than the wild type. Our method provides a fast, simple, and powerful solution for the industrial engineering and screening of Streptomyces in more industry-relevant conditions.
链霉菌是用于生产蛋白质和小分子药物的最重要的工业微生物之一。以前报道的基于流式细胞术的筛选方法只能筛选从菌丝体释放的孢子或原生质体,而这些方法并不能代表用于工业培养的丝状静止期链霉菌。在这里,我们展示了一种基于液滴的微流控平台,以促进更相关、更可靠和更快速的链霉菌菌丝体筛选,并实现了高达 334.2 的富集比。使用该平台,我们在液滴中快速表征了一系列来自链霉菌变红红 66 的天然和异源组成型启动子,并从两个合成启动子文库中有效地筛选出了一组具有所需强度的工程启动子变体。我们还成功地从随机链霉菌变红红 66 突变文库中筛选出了几株纤维素酶高产菌,其纤维素酶产量比野生型高 69.2-111.4%。我们的方法为在更符合工业需求的条件下对链霉菌进行工业工程和筛选提供了一种快速、简单、强大的解决方案。