Berry David, Gutierrez Tony
Division of Microbial Ecology, Department of Microbiology and Ecosystem Science, Research Network Chemistry Meets Microbiology, University of ViennaVienna, Austria.
School of Engineering and Physical Sciences, Heriot-Watt UniversityEdinburgh, United Kingdom.
Front Microbiol. 2017 May 17;8:896. doi: 10.3389/fmicb.2017.00896. eCollection 2017.
Hydrocarbonoclastic bacteria (HCB) play a key role in the biodegradation of oil hydrocarbons in marine and other environments. A small number of taxa have been identified as obligate HCB, notably the Gammaproteobacterial genera , and , as well as the Alphaproteobacterial genus . Detection of HCB in amplicon-based sequencing surveys relies on high coverage by PCR primers and accurate taxonomic classification. In this study, we performed a phylogenetic analysis to identify 16S rRNA gene sequence regions that represent the breadth of sequence diversity within these taxa. Using validated sequences, we evaluated 449 universal 16S rRNA gene-targeted bacterial PCR primer pairs for their coverage of these taxa. The results of this analysis provide a practical framework for selection of suitable primer sets for optimal detection of HCB in sequencing surveys.
烃类分解菌(HCB)在海洋及其他环境中石油烃的生物降解过程中发挥着关键作用。少数分类群已被确定为专性HCB,特别是γ-变形菌纲的一些属,以及α-变形菌纲的一个属。基于扩增子的测序调查中对HCB的检测依赖于PCR引物的高覆盖率和准确的分类学分类。在本研究中,我们进行了系统发育分析,以确定代表这些分类群内序列多样性广度的16S rRNA基因序列区域。利用经过验证的序列,我们评估了449对靶向细菌16S rRNA基因的通用PCR引物对这些分类群的覆盖率。该分析结果为在测序调查中选择合适的引物组以实现对HCB的最佳检测提供了一个实用框架。