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首页> 外文期刊>Journal of Microbiological Methods >One-dimensional TRFLP-SSCP is an effective DNA fingerprinting strategy for soil Archaea that is able to simultaneously differentiate broad taxonomic clades based on terminal fragment length polymorphisms and closely related sequences based on single stranded conformation polymorphisms.
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One-dimensional TRFLP-SSCP is an effective DNA fingerprinting strategy for soil Archaea that is able to simultaneously differentiate broad taxonomic clades based on terminal fragment length polymorphisms and closely related sequences based on single stranded conformation polymorphisms.

机译:一维TRFLP-SSCP是土壤古生菌的有效DNA指纹识别策略,它能够基于末端片段长度多态性和基于单链构象多态性的紧密相关序列同时区分广泛的分类进化枝。

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DNA fingerprinting methods provide a means to rapidly compare microbial assemblages from environmental samples without the need to first cultivate species in the laboratory. The profiles generated by these techniques are able to identify statistically significant temporal and spatial patterns, correlations to environmental gradients, and biological variability to estimate the number of replicates for clone libraries or next generation sequencing (NGS) surveys. Here we describe an improved DNA fingerprinting technique that combines terminal restriction fragment length polymorphisms (TRFLP) and single stranded conformation polymorphisms (SSCP) so that both can be used to profile a sample simultaneously rather than requiring two sequential steps as in traditional two-dimensional (2-D) gel electrophoresis. For the purpose of profiling Archaeal 16S rRNA genes from soil, the dynamic range of this combined 1-D TRFLP-SSCP approach was superior to TRFLP and SSCP. 1-D TRFLP-SSCP was able to distinguish broad taxonomic clades with genetic distances greater than 10%, such as Euryarchaeota and the Thaumarchaeal clades g_Ca. Nitrososphaera (formerly 1.1b) and o_NRP-J (formerly 1.1c) better than SSCP. In addition, 1-D TRFLP-SSCP was able to simultaneously distinguish closely related clades within a genus such as s_SCA1145 and s_SCA1170 better than TRFLP. We also tested the utility of 1-D TRFLP-SSCP fingerprinting of environmental assemblages by comparing this method to the generation of a 16S rRNA clone library of soil Archaea from a restored Tallgrass prairie. This study shows 1-D TRFLP-SSCP fingerprinting provides a rapid and phylogenetically informative screen of Archaeal 16S rRNA genes in soil samples.Digital Object Identifier http://dx.doi.org/10.1016/j.mimet.2013.07.003
机译:DNA指纹分析方法提供了一种方法,可以快速比较环境样品中的微生物,而无需首先在实验室中进行培养。这些技术生成的配置文件能够识别统计上显着的时间和空间模式,与环境梯度的相关性以及生物学变异性,以评估克隆文库或下一代测序(NGS)调查的重复次数。在这里,我们描述了一种改进的DNA指纹技术,该技术结合了末端限制性片段长度多态性(TRFLP)和单链构象多态性(SSCP),因此它们都可以同时用于分析样品,而不像传统的二维方法那样需要两个连续的步骤( 2-D)凝胶电泳。为了从土壤中分析古细菌16S rRNA基因,这种组合的一维TRFLP-SSCP方法的动态范围优于TRFLP和SSCP。一维TRFLP-SSCP能够区分遗传距离大于10%的广泛分类进化枝,例如Euryarchaeota和Thaumarchaeal进化枝g_Ca。亚硝化球菌(以前为1.1b)和o_NRP-J(以前为1.1c)优于SSCP。此外,一维TRFLP-SSCP能够比TRFLP更好地区分一个属中紧密相关的进化枝,例如s_SCA1145和s_SCA1170。通过比较该方法与从恢复的塔尔格拉斯草原土壤古生菌的16S rRNA克隆文库的生成,我们还测试了环境组合的一维TRFLP-SSCP指纹图谱的实用性。这项研究表明,一维TRFLP-SSCP指纹图谱提供了土壤样品中古细菌16S rRNA基因的快速系统信息学筛查。数字对象标识符http://dx.doi.org/10.1016/j.mimet.2013.07.003

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