期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
STI PCR: An efficient method for amplification and de novo synthesis of long DNA sequences 被引量:1
1
作者 Zhe Zhao Xianrong Xie +10 位作者 Weizhi Liu Jingjing Huang Jiantao Tan Haixin Yu Wubei Zong Jintao Tang Yanchang Zhao Yang Xue Zhizhan Chu Letian Chen Yao-Guang Liu 《Molecular Plant》 SCIE CAS CSCD 2022年第4期620-629,共10页
Despite continuous improvements,it is difficult to efficiently amplify large sequences from complex templates using current PCR methods.Here,we developed a suppression thermo-interlaced(STI)PCR method for the efficien... Despite continuous improvements,it is difficult to efficiently amplify large sequences from complex templates using current PCR methods.Here,we developed a suppression thermo-interlaced(STI)PCR method for the efficient and specific amplification of long DNA sequences from genomes and synthetic DNA pools.This method uses site-specific primers containing a common 50 tag to generate a stem-loop structure,thereby repressing the amplification of smaller non-specific products through PCR suppression(PS).However,large target products are less affected by PS and show enhanced amplification when the competitive amplification of non-specific products is suppressed.Furthermore,this method uses nested thermointerlaced cycling with varied temperatures to optimize strand extension of long sequences with an uneven GC distribution.The combination of these two factors in STI PCR produces a multiplier effect,markedly increasing specificity and amplification capacity.We also developed a webtool,calGC,for analyzing the GC distribution of target DNA sequences and selecting suitable thermo-cycling programs for STI PCR.Using this method,we stably amplified very long genomic fragments(up to 38 kb)from plants and human and greatly increased the length of de novo DNA synthesis,which has many applications such as cloning,expression,and targeted genomic sequencing.Our method greatly extends PCR capacity and has great potential for use in biological fields. 展开更多
关键词 STI PCR PCR suppression thermo-interlaced cycling long genomic fragments de novo DNA synthesis
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部