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调控黑腹果蝇基因组中六个LTR逆转座子拷贝数的机制。

Mechanisms regulating the copy numbers of six LTR retrotransposons in the genome of Drosophila melanogaster.

作者信息

Carr Martin, Soloway Judith R, Robinson Thelma E, Brookfield John F Y

机构信息

Institute of Genetics, University of Nottingham, Queens Medical Centre, UK.

出版信息

Chromosoma. 2002 Feb;110(8):511-8. doi: 10.1007/s00412-001-0174-0.

Abstract

There has been debate over the mechanisms that control the copy number of transposable elements in the genome of Drosophila melanogaster. Target sites in D. melanogaster populations are occupied at low frequencies, suggesting that there is some form of selection acting against transposable elements. Three main theories have been proposed to explain how selection acts against transposable elements: insertions of a copy of a transposable element are selected against; chromosomal rearrangements caused by ectopic exchange between element copies are selected against; or the process of transposition itself is selected against. The three theories give different predictions for the pattern of transposable element insertions in the chromosomes of D. melanogaster. We analysed the abundance of six LTR (long terminal repeat) retrotransposons on the X and fourth chromosomes of multiple strains of D. melanogaster, which we compare with the predictions of each theory. The data suggest that no one theory can account for the insertion patterns of all six retrotransposons. Comparing our results with earlier work using these transposable element families, we find a significant correlation between studies in the particular model of copy number regulation supported by the proportion of elements on the X for the different transposable element families. This suggests that different retrotransposon families are regulated by different mechanisms.

摘要

关于控制黑腹果蝇基因组中转座元件拷贝数的机制一直存在争论。在黑腹果蝇种群中,靶位点的占据频率较低,这表明存在某种形式的针对转座元件的选择作用。已经提出了三种主要理论来解释选择如何作用于转座元件:转座元件拷贝的插入受到选择淘汰;元件拷贝之间异位交换导致的染色体重排受到选择淘汰;或者转座过程本身受到选择淘汰。这三种理论对黑腹果蝇染色体中转座元件插入模式给出了不同的预测。我们分析了多个黑腹果蝇品系的X染色体和第四条染色体上六种LTR(长末端重复序列)逆转录转座子的丰度,并将其与每种理论的预测进行比较。数据表明,没有一种理论能够解释所有六种逆转录转座子的插入模式。将我们的结果与早期使用这些转座元件家族的研究进行比较,我们发现在不同转座元件家族中,由X染色体上元件比例支持的特定拷贝数调控模型的研究之间存在显著相关性。这表明不同的逆转录转座子家族受不同机制的调控。

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