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An efficient blue-white screening system for markerless deletions and stable integrations in Streptomyces chromosomes based on the blue pigment indigoidine biosynthetic gene bpsA

机译:一种高效的蓝白筛选系统,用于无价值缺失和基于蓝色颜料的染色体染色体的稳定集成基于蓝色颜料Incigoidine Biosynethic基因BPSA

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摘要

We previously developed an efficient deletion system for streptomycetes based on the positive selection of double-crossover events using bpsA, a gene for producing the blue pigment indigoidine. Using this system, we removed interfering secondary metabolite clusters from Streptomyces lividans TK24, resulting in RedStrep strains with dramatically increased heterologous production of mithramycin A (up to 3-g/l culture). This system, however, required a time-consuming step to remove the resistance marker genes. In order to simplify markerless deletions, we prepared a new system based on the plasmid pAMR18A. This plasmid contains a large polylinker with many unique restriction sites flanked by apramycin and kanamycin resistance genes and the bpsA gene for selecting a double-crossover event. The utility of this new markerless deletion system was demonstrated by its deletion of a 21-kb actinorhodin gene cluster from Streptomyces lividans TK24 with 30% efficiency. We used this system to efficiently remove the matA and matB genes in selected RedStrep strains, resulting in biotechnologically improved strains with a highly dispersed growth phenotype involving non-pelleting small and open mycelia. No further increase in mithramycin A production was observed in these new RedStrep strains, however. We also used this system for the markerless insertion of a heterologous mCherry gene, an improved variant of the monomeric red fluorescent protein, under the control of the strong secretory signal sequence of the subtilisin inhibitor protein, into the chromosome of S. lividans TK24. The resulting recombinant strains efficiently secreted mCherry into the growth medium in a yield of 30mg/l.
机译:我们之前的基于使用BPSA的双交叉事件的阳性选择为链霉菌进行了有效的删除系统,该基因是生产蓝色颜料Incigoidine的基因。使用该系统,我们除去干扰来自链霉菌TK24的干扰次级代谢物簇,导致Redstrep菌株显着增加了Mithramycin A的异源生成(高达3-g / L培养)。然而,该系统需要耗时的步骤以去除阻力标记基因。为了简化无价值的缺失,我们编写了一种基于质粒PAMR18A的新系统。该质粒含有大的聚膜膜,其具有许多独特的限制性位点,其侧翼侧翼为尿嘧啶和卡那霉素抗性基因和BPSA基因,用于选择双交叉事件。通过缺失来自Streptomyces Lividans TK24的21-KB Actinorhodin基因群,效率为30%的效率,证明了这种新无价值删除系统的效用。我们利用该系统在选择的Redstrep菌株中有效地去除Mata和Matb基因,导致生物技术上改善的菌株具有高度分散的生长表型,涉及非造粒的小和开放菌丝蛋白。然而,在这些新的Redstrep菌株中,未观察到Mithramycin的进一步增加。我们还利用该系统用于无价值插入异源麦克里基因,在枯草杆菌蛋白酶抑制剂蛋白的强烈分泌信号序列的控制下,进入S. Lividans TK24的染色体的单体红色荧光蛋白的改进变体。得到的重组菌株将MCHERRY有效地分泌到生长培养基中,产率为30mg / L.

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