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Automated scanning for phylogenetically informative transposed elements in rodents

机译:自动扫描啮齿动物的系统发育信息转座元素

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摘要

Transposed elements constitute an attractive, useful source of phylogenetic markers to elucidate the evolutionary history of their hosts. Frequent and successive amplifications over evolutionary time are important requirements for utilizing their presence or absence as landmarks of evolution. Although transposed elements are well distributed in rodent taxa, the generally high degree of genomic sequence divergence among species complicates our access to presence/absence data. With this in mind we developed a novel, high-throughput computational strategy, called CPAL (Conserved Presence/Absence Locus-finder), to identify genome-wide distributed, phylogenetically informative transposed elements flanked by highly conserved regions. From a total of 232 extracted chromosomal mouse loci we randomly selected 14 of these plus 2 others from previous test screens and attempted to amplify them via PCR in representative rodent species. All loci were amplifiable and ultimately contributed 31 phylogenetically informative markers distributed throughout the major groups of Rodentia.
机译:转座元件构成了系统发育标记的诱人,有用的来源,以阐明其宿主的进化史。在进化时间上频繁且连续的扩增对于利用它们的存在与否作为进化的标志是重要的要求。尽管转座元件在啮齿类动物分类中分布良好,但物种间总体上高度的基因组序列差异使我们对存在/不存在数据的访问变得复杂。考虑到这一点,我们开发了一种新颖的高通量计算策略,称为CPAL(保守存在/缺失位点查找器),用于鉴定侧翼高度保守区域的全基因组分布,系统信息丰富的转座元件。从总共232个提取的染色体小鼠基因座中,我们从先前的测试筛选中随机选择了14个基因座加上2个其他基因座,并尝试通过PCR在代表性啮齿动物物种中进行扩增。所有基因座都是可扩增的,并最终贡献了分布在主要啮齿类动物中的31个系统发育信息标记。

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