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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Incorporation of guanosine gels into sieving matrices for length- and sequence-based separation of DNA in capillary electrophoresis.
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Incorporation of guanosine gels into sieving matrices for length- and sequence-based separation of DNA in capillary electrophoresis.

机译:将鸟苷凝胶掺入筛分基质中,以进行毛细管电泳中基于长度和序列的DNA分离。

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摘要

Sieving gels are used in capillary gel electrophoresis to resolve DNA strands of different lengths. For complex samples, however, such as those encountered in metagenomic analysis of microbial communities or biofilms, length-based separation may mask the true genetic diversity of the community since different organisms may contribute same-length DNA with different sequences. There is a need, therefore, for DNA separations based on both the length and sequence. Previous work has demonstrated the ability of guanosine gels (G-gels) to separate four single-stranded DNA 76-mers that differ by only a few A/G base substitutions. The goal of the present work is to determine whether G-gels could be combined with commercial sieving gels in order to simultaneously separate DNA based on both length and sequence. The results are given for the four 76-mers and for a standard dsDNA ladder. Commercial sieving gels were used alone and in combination with G-gels. For the 76-mers, the combined medium was less efficient than the G-gel alone but was able to achieve partial resolution. The combined medium was at least as effective as the sieving gel alone at resolving the denatured DNA ladder and showed indications of sequence-based resolution as well, as supported by MALDI-MS. The results show that the combined sieving gel/G-gel medium retains the selectivity of the individual media, providing a promising approach to simultaneous length- and sequence-based DNA separation for metagenomic analysis of complex systems.
机译:筛分凝胶用于毛细管电泳中,以分辨不同长度的DNA链。但是,对于复杂的样本,例如在微生物群落或生物膜的宏基因组分析中遇到的样本,基于长度的分离可能掩盖了群落的真正遗传多样性,因为不同的生物可能以不同的序列贡献相同长度的DNA。因此,需要基于长度和序列的DNA分离。先前的工作证明了鸟苷凝胶(G-gels)能够分离出仅有几个A / G碱基取代而不同的四个单链DNA 76-mer。本工作的目的是确定是否可以将G凝胶与市售的筛分凝胶结合使用,以便同时根据长度和序列分离DNA。给出了四个76聚体和标准dsDNA阶梯的结果。商业筛分凝胶可单独使用,也可与G凝胶结合使用。对于76聚体,合并的培养基比单独使用G-gel的效率低,但能够实现部分拆分。合并的培养基在解决变性的DNA梯子方面至少与单独的筛分凝胶一样有效,并且也显示了基于序列的分离的迹象,这得到了MALDI-MS的支持。结果表明,组合的筛分凝胶/ G凝胶介质保留了单个介质的选择性,为同时进行基于长度和序列的DNA分离,用于复杂系统的宏基因组分析提供了一种有前途的方法。

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