古细菌
生物
16S核糖体RNA
放大器
核糖体RNA
核糖核酸
DNA
微生物种群生物学
基因
细菌
图书馆
DNA测序
遗传学
微生物学
计算生物学
聚合酶链反应
作者
Jo De Vrieze,Ameet Pinto,William T. Sloan,Umer Zeeshan Ijaz
出处
期刊:The University of Glasgow - Enlighten: Publications
日期:2018-04-01
被引量:166
标识
DOI:10.1186/s40168-018-0449-9
摘要
Background: Amplicon sequencing methods targeting the 16S rRNA gene have been used extensively to investigate microbial community composition and dynamics in anaerobic digestion. These methods successfully characterize amplicons but do not distinguish micro-organisms that are actually responsible for the process. In this research, the archaeal and bacterial community of 48 full-scale anaerobic digestion plants were evaluated on DNA (total community) and RNA (active community) level via 16S rRNA (gene) amplicon sequencing. Results: A significantly higher diversity on DNA compared with the RNA level was observed for archaea, but not for bacteria. Beta diversity analysis showed a significant difference in community composition between the DNA and RNA of both bacteria and archaea. This related with 25.5 and 42.3% of total OTUs for bacteria and archaea, respectively, that showed a significant difference in their DNA and RNA profiles. Similar operational parameters affected the bacterial and archaeal community, yet the differentiating effect between DNA and RNA was much stronger for archaea. Co-occurrence networks and functional prediction profiling confirmed the clear differentiation between DNA and RNA profiles. Conclusions: In conclusion, a clear difference in active (RNA) and total (DNA) community profiles was observed, implying the need for a combined approach to estimate community stability in anaerobic digestion.
科研通智能强力驱动
Strongly Powered by AbleSci AI