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黑腹果蝇近交系中copia元件的基因组重排

Genome reshuffling of the copia element in an inbred line of Drosophila melanogaster.

作者信息

Biémont C, Aouar A, Arnault C

机构信息

Laboratoire de Biologie des Populations, Université Claude Bernard, Villeurbanne, France.

出版信息

Nature. 1987;329(6141):742-4. doi: 10.1038/329742a0.

Abstract

Mobile genetic elements are found in the genomes of many organisms, and because of their effects on genes and their ability to induce chromosomal rearrangements they are an important source of genetic variability. Transposition rates are usually found to be low, estimated at around 10(-3) per generation. Higher rates of transposition are observed, however, in crosses between certain strains of Drosophila melanogaster ('hybrid dysgenesis'), which can lead to a dramatic rearrangement of many mobile elements ('transposition bursts'). We have studied the chromosomal distribution of mdg-1 and copia mobile elements in 17 highly inbred lines of D. melanogaster, after 69 generations of sib-mating. Most lines show no changes, but one showed a complete reshuffling of the copia element. We conclude that the transpositions of the copia element in this line occurred rapidly in a few generations. This phenomenon, distinct from 'transposition bursts' in that only copia elements are involved, may account for the instability sometimes observed in inbred lines and may be important in creating genetic variability in highly homozygous populations.

摘要

可移动遗传元件存在于许多生物体的基因组中,由于它们对基因的影响以及诱导染色体重排的能力,它们是遗传变异的重要来源。转座率通常较低,估计每代约为10(-3)。然而,在某些黑腹果蝇品系之间的杂交(“杂种不育”)中观察到较高的转座率,这可能导致许多可移动元件的剧烈重排(“转座爆发”)。在经过69代同胞交配后,我们研究了17个高度近交的黑腹果蝇品系中mdg-1和copia可移动元件的染色体分布。大多数品系没有变化,但有一个品系的copia元件发生了完全重排。我们得出结论,该品系中copia元件的转座在几代内迅速发生。这种现象与“转座爆发”不同,因为只涉及copia元件,它可能解释了有时在近交系中观察到的不稳定性,并且可能在高度纯合群体中产生遗传变异方面很重要。

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