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High-efficiency thermal asymmetric interlaced PCR for amplification of unknown flanking sequences

机译:高效热不对称交错PCR用于未知侧翼序列的扩增

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摘要

Isolation of unknown DNA sequences flanked by known sequences is an important task in molecular biology research. Thermal asymmetric interlaced PCR (TAIL-PCR) is an effective method for this purpose. However the success rate of the original TAIL-PCR needs to be increased, and it is more desirable to obtain target products with larger sizes. Here we present a substantially improved TAIL-PCR procedure with special primer design and optimized thermal conditions. This high-efficiency TAIL-PCR (hiTAIL-PCR) combines the advantages of the TAIL-cycling and suppression-PCR, thus it can block the amplification of nontarget products and suppress small target ones, but allow efficient amplification of large target sequences. Using this method, we isolated genomic flanking sequences of T-DNA insertions from transgenic rice lines. In our tests, the success rates of the reactions were higher than 90%, and in most cases the obtained major products had sizes of 1-3 kb.
机译:分离侧翼为已知序列的未知DNA序列是分子生物学研究中的重要任务。热不对称交错PCR(TAIL-PCR)是实现此目的的有效方法。然而,原始TAIL-PCR的成功率需要提高,并且更期望获得具有更大尺寸的目标产物。在这里,我们介绍了一种经过特别改进的引物设计和优化了热条件的TAIL-PCR程序。这种高效的TAIL-PCR(hiTAIL-PCR)结合了TAIL循环和抑制PCR的优势,因此它可以阻断非靶标产物的扩增并抑制小的靶标产物,但可以有效地扩增大靶标序列。使用此方法,我们从转基因水稻品系中分离了T-DNA插入的基因组侧翼序列。在我们的测试中,反应的成功率高于90%,并且在大多数情况下,所获得的主要产物的大小为1-3 kb。

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