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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Nitrogen versus carbon use in prokaryotic genomes and proteomes
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Nitrogen versus carbon use in prokaryotic genomes and proteomes

机译:氮与碳在原核基因组和蛋白质组中的使用

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摘要

There is growing recognition that the elemental composition of genomes and proteins can be related to resource limitation. We examine the possibility that the elemental composition of nucleic acids and the amino acids (and proteins) they encode are correlated. We report a positive association between the stoichiometric ratio of N/C content of individual amino acids and their codons. Potentially, this is an outcome of chemical interactions between amino acids and anticodons that influenced the evolution of the genetic code. We also find a strong, positive relationship between N/C values of whole genomes and proteomes, across 94 prokaryotic species. This relationship is part of a spectrum in nitrogen versus carbon use across genomes and proteomes, which is correlated with genomic GC content. GC content is correlated positively with average nitrogen use, and negatively with average carbon use, across both genomes and proteomes.
机译:人们日益认识到,基因组和蛋白质的元素组成可能与资源限制有关。我们检查了核酸的元素组成与它们编码的氨基酸(和蛋白质)相关的可能性。我们报告单个氨基酸的N / C含量的化学计量比与其密码子之间呈正相关。潜在地,这是氨基酸和反密码子之间化学相互作用的结果,该相互作用影响了遗传密码的进化。我们还发现,在94个原核物种中,整个基因组的N / C值与蛋白质组之间有很强的正相关关系。这种关系是整个基因组和蛋白质组中氮与碳使用之间关系的光谱的一部分,这与基因组GC含量相关。在整个基因组和蛋白质组中,GC含量与平均氮消耗呈正相关,与平均碳消耗呈负相关。

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