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Microbiology of Saturated Salt Solutions and Other Harsh Environments. IV. New Observations of Ribonucleotide-Induced Recovery of KCl-Habituated Penicillium notatum1

机译:饱和盐溶液和其他恶劣环境的微生物学。 IV。核糖核苷酸诱导的氯化钾致突变性青霉的恢复的新观察

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摘要

Salt-tolerant mutant Penicillium notatum sub-cultured in a glucose-peptone broth saturated with KCl shows continued attenuated growth when transferred to salt-free broth. Additional tests have shown E. coli S-RNA to be inferior to yeast RNA preparations, that base-free phosphate sources are inactive, but that nicotinamide adenine dinucleotide and flavine adenine dinucleotide are moderately active. All phosphate derivatives of adenine, cytosine and guanosine and inosine were active including 5′-polyphosphates, 3′(2′)-monophosphates 5′-monophosphates, and adenine 3′, 5′-cyclic monophosphate. Uracil derivatives were of low activity at best.
机译:在用KCl饱和的葡萄糖pe培养液中传代培养的耐盐突变型Penicillium notatum,当转移到无盐培养液中时,生长持续减弱。其他测试表明,大肠杆菌S-RNA不如酵母RNA制剂,无碱基的磷酸盐来源无活性,但烟酰胺腺嘌呤二核苷酸和黄素腺嘌呤二核苷酸具有中等活性。腺嘌呤,胞嘧啶,鸟苷和肌苷的所有磷酸盐衍生物均具有活性,包括5'-多磷酸盐,3'(2')-单磷酸盐5'-单磷酸盐和腺嘌呤3',5'-环状单磷酸盐。尿嘧啶衍生物充其量是低活性的。

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