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Same-strand overlapping genes in bacteria: compositional determinants of phase bias

机译:细菌中的同链重叠基因:相位偏差的组成决定因素

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摘要

BackgroundSame-strand overlapping genes may occur in frameshifts of one (phase 1) or two nucleotides (phase 2). In previous studies of bacterial genomes, long phase-1 overlaps were found to be more numerous than long phase-2 overlaps. This bias was explained by either genomic location or an unspecified selection advantage. Models that focused on the ability of the two genes to evolve independently did not predict this phase bias. Here, we propose that a purely compositional model explains the phase bias in a more parsimonious manner. Same-strand overlapping genes may arise through either a mutation at the termination codon of the upstream gene or a mutation at the initiation codon of the downstream gene. We hypothesized that given these two scenarios, the frequencies of initiation and termination codons in the two phases may determine the number for overlapping genes.
机译:背景同一链重叠基因可能发生在一个(阶段1)或两个核苷酸(阶段2)的移码中。在以前的细菌基因组研究中,发现长相1重叠比长相2重叠要多。这种偏倚可以通过基因组位置或未指定的选择优势来解释。专注于两个基因独立进化的能力的模型无法预测这种相位偏差。在这里,我们提出一个纯粹的成分模型以更简洁的方式解释相位偏差。同链重叠基因可能通过上游基因终止密码子处的突变或下游基因起始密码子处的突变而产生。我们假设在这两种情况下,两个阶段中起始密码子和终止密码子的频率可能决定重叠基因的数量。

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