Wichman H A, Potter S S, Pine D S
Nature. 1985;317(6032):77-81. doi: 10.1038/317077a0.
It has recently been demonstrated both emperically and mathematically that transposable elements may spread rapidly throughout a population once introduced even when they dramatically reduce the fitness of individuals that carry them. Such events result in pronounced differences in the phylogenetic distribution of genetic elements capable of rapid genome invasion. Using a simple and general procedure to screen the genome of the white-footed mouse Peromyscus leucopus, we have isolated a family of retrovirus-like elements which is apparently absent from the genome of the house mouse Mus domesticus. Here, we report this procedure and an analysis of the organization, phylogenetic distribution and sequence of this family of transposable elements.
最近通过实验和数学方法均已证明,转座元件一旦被引入种群,即便会显著降低携带它们的个体的适应性,仍可能在种群中迅速传播。此类事件导致能够快速侵入基因组的遗传元件在系统发育分布上出现显著差异。我们采用一种简单通用的方法筛选白足鼠(Peromyscus leucopus)的基因组,分离出了一个逆转录病毒样元件家族,而家鼠(Mus domesticus)的基因组中显然没有该家族元件。在此,我们报告这一方法以及对该转座元件家族的组织、系统发育分布和序列的分析。