双歧杆菌链霉菌螺旋霉素生物合成的遗传和生化特征——固化、原生质体再生和质粒转移。

H Ikeda, H Tanaka, S Omura
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引用次数: 19

摘要

含有pSA1质粒的产螺旋霉素的双歧杆菌KA-1028在不同的固化处理下高频地产生不产螺旋霉素的变异。然而,通过吖啶染料处理获得的一些不产生螺旋霉素的后代,仍然含有质粒dna,通过轮廓长度、切割模式和异双工分析无法与质粒pSA1区分。用丝裂霉素C对质粒pSA1进行高效固化,获得不产螺旋霉素的菌株。通过质粒固化菌株U-1717原生质体再生获得的菌株U-1717R仅在固体培养基上生长,恢复了螺旋霉素的产量。此外,菌株KA-1028与U-1717R-24(耐链霉素)杂交获得的转接合物在液体和固体培养基中都能恢复螺旋霉素的生产。我们得出结论,螺旋霉素的生物合成基因编码在质粒pSA1以外的复制子中,但该质粒在螺旋霉素生产的调控中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic and biochemical features of spiramycin biosynthesis in Streptomyces ambofaciens--curing, protoplast regeneration and plasmid transfer.

Spiramycin-producing Streptomyces ambofaciens KA-1028 harboring the pSA1 plasmid gave rise to spiramycin non-producing variants at high frequencies by various curing treatments. However, a number of the spiramycin non-producing progeny obtained by treatment with acridine dyes, still harbored plasmid DNAs which could not be differentiated from plasmid pSA1 by contour length, cleavage patterns and heteroduplex analysis. By treatment with mitomycin C, plasmid pSA1 was cured at high efficiency and spiramycin non-producing strains were obtained. Strain U-1717R obtained by regeneration of protoplasts of plasmid-cured strain U-1717 regained spiramycin production on growth on solid medium only. Furthermore, transconjugants obtained by mating between strain KA-1028 and U-1717R-24 (streptomycin-resistant) regained spiramycin production in both liquid and solid media. We conclude that the genes for the biosynthesis of spiramycin are encoded in a replicon other than plasmid pSA1 but that this plasmid plays a role in the regulation of spiramycin production.

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