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Occurrence and Ecological Significance of GTP in the Ocean and in Microbial Cells

机译:海洋和微生物细胞中GTP的发生及其生态学意义

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A comparison between the ATP concentrations based on peak height light emission values (0 to 3 s) and integrated light flux determinations (15 to 75 s) for a variety of seawater samples revealed that the integrated method of light detection consistently yielded higher ATP concentrations, ranging from 1.38 to 2.35 times larger than the corresponding peak ATP values. A significant correlation (r = 0.923) was observed for a plot of ΔADP (i.e., integrated ATP - peak ATP) versus GTP + UTP, suggesting that the analytical interference on the ATP assay was the result of the presence of non-adenine nucleotide triphosphates. Size-fractionation studies revealed an enrichment of the non-adenine nucleotide triphosphates, relative to ATP, in the smallest size fraction analyzed (Serratia marinorubra. These results indicated that the intracellular GTP/ATP ratios in S. marinorubra increase in direct proportion to the rate of cell growth, and that the GTP/ATP ratios in bacteria are much greater than in growing algae, presumably due to the differences in rates of cellular biosynthesis. It is concluded that quantitative determinations of GTP/ATP ratios in environmental sample extracts may be useful for measuring microbial growth.
机译:基于峰值高度发光值(0至3 s)的ATP浓度与各种海水样品的综合光通量测定(15至75 s)之间的比较表明,集成的光检测方法始终产生较高的ATP浓度,范围是相应的ATP峰值的1.38到2.35倍。对于ΔADP(即ATP积分-ATP峰值)与GTP + UTP的关系图,观察到显着相关性(r = 0.923),这表明对ATP分析的分析干扰是非腺嘌呤核苷酸三磷酸存在的结果。大小分级研究显示,相对于ATP,非腺嘌呤核苷酸三磷酸的富集程度最小(Serratia marinorubra)。这些结果表明,S。marinorubra中的细胞内GTP / ATP比与比率成正比增加。推测是由于细胞生物合成速率的差异,细菌中的GTP / ATP比值大大高于生长藻类,因此得出结论,定量测定环境样品提取物中的GTP / ATP比值可能是有用的用于测量微生物的生长。

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