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Monte Carlo simulations of the inside intron recombination

机译:内含子重组的蒙特卡洛模拟

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Biological genomes are divided into coding and non-coding regions. Introns are non-coding parts within genes, while the remaining non-coding parts are intergenic sequences. To study evolutionary significance of the inside intron recombination we have used two models based on the Monte Carlo method. In our computer simulations we have implemented the internal structure of genes by declaring the probability of recombination between exons. One situation when inside intron recombination is advantageous is recovering functional genes by combining proper exons dispersed in the genetic pool of the population after a long period without selection for the function of the gene. Populations have to pass through the bottleneck, then. These events are rather rare and we have expected that there should be other phenomena giving profits from the inside intron recombination. In fact we have found that inside intron recombination is advantageous only in the case when after recombination, besides the recombinant forms, parental haplotypes are available and selection is set already on gametes.
机译:生物基因组分为编码区和非编码区。内含子是基因内的非编码部分,而其余的非编码部分是基因间序列。为了研究内部内含子重组的进化意义,我们使用了基于蒙特卡洛方法的两个模型。在我们的计算机模拟中,我们通过声明外显子之间重组的可能性来实现基因的内部结构。内部内含子重组是有利的一种情况是通过在很长一段时间内不选择基因功能的情况下结合散布在种群遗传库中的适当外显子来恢复功能基因。那么,人口必须克服瓶颈。这些事件相当罕见,我们期望应该有其他现象可以从内部内含子重组中获利。实际上,我们发现内含子重组仅在重组后的情况下才是有利的,除了重组形式之外,还可以使用亲本单倍型并且已经在配子上进行选择。

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