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Characterizing gene movements between chromosomes in Drosophila.

机译:表征果蝇染色体之间的基因运动。

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Genes occasionally change their location in the genome through inter-chromosomal duplication and loss. These changes happen as mistakes during recombination or through retrotransposition. In Han and Hahn 2011,(1) we surveyed the genomes of ten Drosophila species, to identify and characterize the gene transposition events in the history of these species. In the paper, we showed that the rate of gene transposition in Drosophila is higher than previously appreciated. To understand the process of gene transposition, we examined the sequences, locations, and functions of the transposed genes. Based on the elevated rate of sequence evolution in transposed genes and the frequent movements near the centromeres and telomeres, we could not reject the hypothesis that these are mutations fixed through relaxed selection. But, by examining the functions of transposed genes more carefully, we found that genes with male-specific functions and genes with female-specific functions move in opposite directions involving the X chromosome. We also found an over-representation of chromosome related functions among the transposed genes. These observations suggest the possibility of particular selection pressures contributing to gene transpositions in Drosophila.
机译:基因偶尔会通过染色体间的复制和丢失而改变其在基因组中的位置。这些变化是重组或逆转过程中的错误。在Han and Hahn 2011中,(1)我们调查了十个果蝇物种的基因组,以鉴定和表征这些物种历史上的基因转座事件。在本文中,我们显示了果蝇中基因转座的速率比以前认可的更高。为了了解基因转座的过程,我们检查了转座基因的序列,位置和功能。基于转座基因中序列进化速率的提高以及着丝粒和端粒附近的频繁运动,我们不能拒绝这样的假设,即这些是通过轻松选择而固定的突变。但是,通过更仔细地检查转座基因的功能,我们发现具有男性特定功能的基因和具有女性特定功能的基因在涉及X染色体的相反方向上移动。我们还发现转座基因中染色体相关功能的过度表达。这些观察结果提示特定选择压力可能有助于果蝇中的基因转座。

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