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高通量热不对称交错PCR作为鉴定插入侧翼DNA的工具。

High-throughput TAIL-PCR as a tool to identify DNA flanking insertions.

作者信息

Singer Tatjana, Burke Ellen

机构信息

Diversa Corporation, San Diego, CA, USA.

出版信息

Methods Mol Biol. 2003;236:241-72. doi: 10.1385/1-59259-413-1:241.

Abstract

Thermal asymmetric interlaced polymerase chain reaction (TAIL-PCR) is a fast and efficient method to amplify unknown sequences adjacent to known insertion sites in Arabidopsis. Nested, insertion-specific primers are used together with arbitrary degenerate primers (AD primers), which are designed to differ in their annealing temperatures. Alternating cycles of high and low annealing temperature yield specific products bordered by an insertion-specific primer on one side and an AD primer on the other. Further specificity is obtained through subsequent rounds of TAIL-PCR, using nested insertion-specific primers. The increasing availability of whole genome sequences renders TAIL-PCR an attractive tool to easily identify insertion sites in large genome tagging populations through the direct sequencing of TAIL-PCR products. For large-scale functional genomics approaches, it is desirable to obtain flanking sequences for each individual in the population in a fast and cost-effective manner. In this chapter, we describe a TAIL-PCR method amenable for high-throughput production (HT-TAIL-PCR) in Arabidopsis. Based on this protocol, HT-TAIL-PCR may be easily adapted for other organisms.

摘要

热不对称交错聚合酶链反应(TAIL-PCR)是一种快速有效的方法,用于扩增拟南芥中已知插入位点附近的未知序列。嵌套的、插入特异性引物与任意简并引物(AD引物)一起使用,这些引物在退火温度上有所不同。高低退火温度交替循环产生特定产物,一侧以插入特异性引物为边界,另一侧以AD引物为边界。通过使用嵌套的插入特异性引物进行后续几轮TAIL-PCR,可获得更高的特异性。全基因组序列的可用性不断提高,使得TAIL-PCR成为一种有吸引力的工具,通过直接对TAIL-PCR产物进行测序,可轻松识别大型基因组标签群体中的插入位点。对于大规模功能基因组学方法,期望以快速且经济高效的方式获得群体中每个个体的侧翼序列。在本章中,我们描述了一种适用于拟南芥高通量生产的TAIL-PCR方法(HT-TAIL-PCR)。基于此方案,HT-TAIL-PCR可轻松适用于其他生物体。

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