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A Test of the Null Model for 5′ UTR Evolution Based on GC Content

机译:基于GC含量的5'UTR进化空模型的测试

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Eukaryotic mRNAs are headed by a stretch of noncoding sequence, the 5′ untranslated region (UTR). It has been proposed that the length of 5′ UTRs is selectively neutral and evolves under a process of stochastic destruction and recruitment of core promoter elements, combined with selection against the premature initiation of translation. We test this null model by investigating whether 5′ UTR length varies with genomic GC content, an implicit prediction of the model. Using simulations, we show that the null model predicts a positive relationship between GC content and UTR length for genes regulated by a TATA box. Although this prediction is borne out qualitatively in genomic data from yeast, fruit flies, and humans, we find marked quantitative discrepancies. We conclude that UTR length may be shaped to some degree by the forces considered in the null model but that the model fails to provide a complete explanation for UTR length evolution.
机译:真核mRNA以一段非编码序列(5'非翻译区(UTR))为首。已经提出5'UTR的长度是选择性中性的,并且在随机破坏和募集核心启动子元件的过程中发展,并结合针对翻译的过早启动的选择。我们通过研究5'UTR长度是否随基因组GC含量变化(模型的隐式预测)来测试此空模型。使用模拟,我们表明,空模型可以预测TATA盒调控的基因的GC含量和UTR长度之间呈正相关。尽管从酵母,果蝇和人类的基因组数据中定性地证实了这一预测,但我们发现明显的定量差异。我们得出的结论是,空模型中考虑的力可能会在一定程度上影响UTR长度,但是该模型无法为UTR长度演变提供完整的解释。

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