首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >ARDEP a Rapid Degenerate Primer Design Pipeline Based on k-mers for Amplicon Microbiome Studies
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ARDEP a Rapid Degenerate Primer Design Pipeline Based on k-mers for Amplicon Microbiome Studies

机译:ARDEP一种基于K-MERS用于扩增子微生物研究的快速退化底漆设计管线

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摘要

The survey of microbial diversity in various environments has relied upon the widespread use of well-evaluated amplification primers for taxonomic marker genes (e.g., prokaryotic 16S and fungal ITS). However, it is urgent to develop a fast and accurate bioinformatic program to design primers for microbial functional genes to explore more mechanisms in the microbial community. Here, we provide a rapid degenerate primer design pipeline (ARDEP) based on the -mer algorithm, which can bypass the time-consuming step of sequence alignment to greatly reduce run times while ensuring accuracy. In addition, we developed an open-access platform for the implementation of primer design projects that could also calculate the amplification product length, GC content, Annealing Temperature (Tm), and ΔG of primer self-folding, and identify covered species and functional groups. Using this new platform, we designed primers for several functional genes in the nitrogen cycle, including and . Our newly designed primers achieved higher coverage than the commonly used primers for all tested genes. The program and the associated platform that applied the -mer algorithm could greatly enhance the design and evaluation of primers for environmental microbiome studies.
机译:各种环境中微生物多样性的调查依赖于广泛使用分类标记基因的评价良好的扩增引物(例如,原核16s和真菌)。然而,迫切需要开发快速准确的生物信息化程序,以设计用于微生物功能基因的引物,以探讨微生物群落中的更多机制。在这里,我们提供了一种基于-mer算法的快速退化的底漆设计管道(ARDEP),其可以绕过序列对齐的耗时步骤,以大大减少运行时间,同时确保精度。此外,我们开发了一个开放式接入平台,用于实现引物设计项目,还可以计算扩增产品长度,GC含量,退火温度(Tm)和ΔG的底漆自折叠,并鉴定覆盖物种和官能团。使用该新平台,我们设计了氮循环中的几个功能基因的引物,包括和。我们的新设计的引物达到了比所有测试基因的常用引物更高的覆盖率。应用-MER算法的程序和相关平台可以大大提高环境微生物组研究的设计和评价。

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