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Eukaryotic Transposable Elements and Genome Evolution Special Feature: Transposon insertion site profiling chip (TIP-chip)

机译:真核转座因子与基因组进化特色:转座子插入位点分析芯片(TIP芯片)

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摘要

Mobile elements are important components of our genomes, with diverse and significant effects on phenotype. Not only can transposons inactivate genes by direct disruption and shuffle the genome through recombination, they can also alter gene expression subtly or powerfully. Currently active transposons are highly polymorphic in host populations, including, among hundreds of others, L1 and Alu elements in humans and Ty1 elements in yeast. For this reason, we wished to develop a simple genome-wide method for identifying all transposons in any given sample. We have designed a transposon insertion site profiling chip (TIP-chip), a microarray intended for use as a high-throughput technique for mapping transposon insertions. By selectively amplifying transposon flanking regions and hybridizing them to the array, we can locate all transposons present in a sample. We have tested the TIP-chip extensively to map Ty1 retrotransposon insertions in yeast and have achieved excellent results in two laboratory strains as well as in evolved Ty1 high-copy strains. We are able to identify all of the theoretically detectable transposons in the FY2 lab strain, with essentially no false positives. In addition, we mapped many new transposon copies in the high-copy Ty1 strain and determined its Ty1 insertion pattern.
机译:流动元件是我们基因组的重要组成部分,对表型具有多种不同的显着影响。转座子不仅可以通过直接破坏使基因失活,而且可以通过重组使基因组混乱,它们还可以巧妙地或强有力地改变基因的表达。当前,活性转座子在宿主群体中高度多态,包括数百个人类中的L1和Alu元素以及酵母中的Ty1元素。因此,我们希望开发一种简单的全基因组方法来鉴定任何给定样品中的所有转座子。我们设计了转座子插入位点分析芯片(TIP芯片),该芯片旨在用作映射转座子插入的高通量技术。通过选择性扩增转座子侧翼区域并将其与阵列杂交,我们可以定位样品中存在的所有转座子。我们已经对TIP芯片进行了广泛的测试,以定位酵母中Ty1反转录转座子的插入,并且在两个实验室菌株以及进化的Ty1高拷贝菌株中均获得了出色的结果。我们能够确定FY2实验室菌株中所有理论上可检测到的转座子,基本上没有假阳性。此外,我们在高拷贝的Ty1菌株中绘制了许多新的转座子拷贝,并确定了其Ty1插入模式。

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