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首页> 外文期刊>Journal of Molecular Evolution >Insights on the Evolution of Metabolic Networks of Unicellular Translationally Biased Organisms from Transcriptomic Data and Sequence Analysis
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Insights on the Evolution of Metabolic Networks of Unicellular Translationally Biased Organisms from Transcriptomic Data and Sequence Analysis

机译:从转录组数据和序列分析洞察单细胞翻译有偏见的生物的代谢网络的演变。

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摘要

Codon bias is related to metabolic functions in translationally biased organisms, and two facts are argued about. First, genes with high codon bias describe in meaningful ways the metabolic characteristics of the organism; important metabolic pathways corresponding to crucial characteristics of the lifestyle of an organism, such as photosynthesis, nitrification, anaerobic versus aerobic respiration, sulfate reduction, methanogenesis, and others, happen to involve especially biased genes. Second, gene transcriptional levels of sets of experiments representing a significant variation of biological conditions strikingly confirm, in the case of Saccharomyces cerevisiae, that metabolic preferences are detectable by purely statistical analysis: the high metabolic activity of yeast during fermentation is encoded in the high bias of enzymes involved in the associated pathways, suggesting that this genome was affected by a strong evolutionary pressure that favored a predominantly fermentative metabolism of yeast in the wild. The ensemble of metabolic pathways involving enzymes with high codon bias is rather well defined and remains consistent across many species, even those that have not been considered as translationally biased, such as Helicobacter pylori, for instance, reveal some weak form of translational bias for this genome. We provide numerical evidence, supported by experimental data, of these facts and conclude that the metabolic networks of translationally biased genomes, observable today as projections of eons of evolutionary pressure, can be analyzed numerically and predictions of the role of specific pathways during evolution can be derived. The new concepts of Comparative Pathway Index, used to compare organisms with respect to their metabolic networks, and Evolutionary Pathway Index, used to detect evolutionarily meaningful bias in the genetic code from transcriptional data, are introduced.
机译:密码子偏倚与翻译偏颇生物体的代谢功能有关,有两个事实被争论。首先,具有高密码子偏倚的基因以有意义的方式描述了生物的代谢特征。与生物体生活方式的关键特征相对应的重要代谢途径,例如光合作用,硝化作用,无氧呼吸与有氧呼吸,硫酸盐还原,甲烷生成等,都特别涉及偏向基因。其次,代表酿酒条件的一组实验的基因转录水平惊人地证实,在酿酒酵母的情况下,可以通过纯粹的统计分析来检测代谢偏好:酵母在发酵过程中的高代谢活性被编码为高偏差。参与相关途径的酶的分析,表明该基因组受到强大的进化压力的影响,进化压力有利于野生酵母的发酵代谢。涉及具有高密码子偏倚性的酶的代谢途径的集合已被很好地定义,并且在许多物种中保持一致,即使那些尚未被认为具有翻译偏见的物种(例如幽门螺杆菌)也显示出这种弱的翻译偏见形式基因组。我们提供这些事实的数值证据,并得到实验数据的支持,并得出结论,可以对当今存在的进化偏见的基因组的翻译偏向基因组的代谢网络进行数值分析,并且可以预测特定途径在进化过程中的作用。派生。介绍了用于比较生物体代谢网络的比较途径指数的新概念,以及用于从转录数据中检测遗传密码中进化上有意义的偏倚的进化途径指数。

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