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Fast sequence evolution of Hox and Hox-derived genes in the genus Drosophila

机译:果蝇属中Hox和Hox衍生基因的快速序列进化

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Background It is expected that genes that are expressed early in development and have a complex expression pattern are under strong purifying selection and thus evolve slowly. Hox genes fulfill these criteria and thus, should have a low evolutionary rate. However, some observations point to a completely different scenario. Hox genes are usually highly conserved inside the homeobox, but very variable outside it. Results We have measured the rates of nucleotide divergence and indel fixation of three Hox genes, labial (lab), proboscipedia (pb) and abdominal-A (abd-A), and compared them with those of three genes derived by duplication from Hox3, bicoid (bcd), zerknüllt (zen) and zerknüllt-related (zen2), and 15 non-Hox genes in sets of orthologous sequences of three species of the genus Drosophila. These rates were compared to test the hypothesis that Hox genes evolve slowly. Our results show that the evolutionary rate of Hox genes is higher than that of non-Hox genes when both amino acid differences and indels are taken into account: 43.39% of the amino acid sequence is altered in Hox genes, versus 30.97% in non-Hox genes and 64.73% in Hox-derived genes. Microsatellites scattered along the coding sequence of Hox genes explain partially, but not fully, their fast sequence evolution. Conclusion These results show that Hox genes have a higher evolutionary dynamics than other developmental genes, and emphasize the need to take into account indels in addition to nucleotide substitutions in order to accurately estimate evolutionary rates.
机译:背景技术预期在发育早期表达并具有复杂表达模式的基因处于强纯化选择下,​​因此进化缓慢。 Hox基因满足这些条件,因此进化速率应较低。但是,一些观察指向完全不同的情况。 Hox基因通常在同源异型框内是高度保守的,但在同源异型框内却非常可变。结果我们测量了三个Hox基因(唇(lab),原皮(pb)和abdominal-A(abd-A))的核苷酸差异和插入缺失固定率,并将其与通过Hox3重复获得的三个基因的核苷酸差异和插入/插入固定进行了比较,在果蝇属的三种物种的直系同源序列中,有二种(bcd),与zerknüllt(zen)和与zerknüllt相关的(zen2)以及15个非Hox基因。比较这些比率以检验Hox基因进化缓慢的假说。我们的结果表明,同时考虑到氨基酸差异和插入缺失,Hox基因的进化速率要高于非Hox基因:Hox基因中43.39%的氨基酸序列发生了改变,而非Hox基因中30.97%的发生了变化。 Hox基因,在Hox衍生基因中占64.73%。沿着Hox基因编码序列散布的微卫星部分解释了它们的快速序列进化,但不能完全解释。结论这些结果表明,Hox基因具有比其他发育基因更高的进化动力学,并强调除核苷酸取代外还需要考虑插入缺失,以准确估计进化速率。

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