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Macromolecule Metabolism and Photosynthetic Functions in Blue-Green Algae Treated with Virginiamycin an Inhibitor of Protein Synthesis

机译:蛋白质合成抑制剂弗吉尼亚霉素处理的蓝绿藻中的大分子代谢和光合功能

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摘要

The M component of virginiamycin inhibited growth of Plectonema boryanum under both photoautotrophic and heterotrophic conditions. Though the S component of this antibiotic had no apparent activity per se, it enhanced the inhibitory action of its partner. Cells incubated with suitable concentrations of either M or M + S stopped growing and lysed. Loss of the colony-forming capacity occurred quickly in the presence of M + S and slowly in the presence of M alone. Virginiamycin M inhibited protein synthesis in autotrophically and heterotrophically growing Plectonema. This effect was very rapid and could be reversed by removing the antibiotic. The S component did not block the incorporation of amino acids into proteins, but prevented the reversibility of the inhibitory effect of M. Virginiamycin M or S did not affect the photosynthetic oxygen development (Hill's reaction) in Plectonema. Moreover, carbon dioxide photoassimilation and formation of chlorophyll were inhibited only after an appreciable lag. Deoxyribonucleic acid synthesis was blocked virtually without delay by virginiamycin M. Since virginiamycin inhibited protein synthesis in a similar fashion in the unicellular Anacystis nidulans, as well as in the filamentous P. boryanum, the mechanism of action of this antibiotic is probably the same in all blue-green algae.
机译:在光合自养和异养条件下,维吉尼亚霉素的M成分均会抑制紫茎泽兰的生长。尽管这种抗生素的S成分本身没有明显的活性,但它增强了其伴侣的抑制作用。用合适浓度的M或M + S孵育的细胞停止生长并裂解。在M + S存在下,菌落形成能力的丧失迅速发生,而在单独的M存在下,菌落形成能力的丧失缓慢发生。弗吉尼亚霉素M抑制自养和异养生长的翼状one肉中的蛋白质合成。这种作用非常迅速,可以通过去除抗生素来逆转。 S成分不阻止氨基酸掺入蛋白质,但阻止了M的抑制作用的可逆性。弗吉尼亚霉素M或S不影响lectlectoma中光合作用的氧发育(希尔反应)。此外,二氧化碳的光同化作用和叶绿素的形成仅在明显的滞后之后才被抑制。脱氧核糖核酸的合成几乎被维吉尼亚霉素M毫不延迟地阻止了。由于维吉尼亚霉素以相似的方式抑制了单细胞无瓣念珠菌以及丝状的boryanum中的蛋白质合成,因此这种抗生素的作用机理在所有情况下都可能是相同的。蓝绿藻。

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