Liu Jane M, Livny Jonathan, Lawrence Michael S, Kimball Marc D, Waldor Matthew K, Camilli Andrew
HHMI, Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, MA 02111, USA.
Nucleic Acids Res. 2009 Apr;37(6):e46. doi: 10.1093/nar/gkp080. Epub 2009 Feb 17.
Direct cloning and parallel sequencing, an extremely powerful method for microRNA (miRNA) discovery, has not yet been applied to bacterial transcriptomes. Here we present sRNA-Seq, an unbiased method that allows for interrogation of the entire small, non-coding RNA (sRNA) repertoire in any prokaryotic or eukaryotic organism. This method includes a novel treatment that depletes total RNA fractions of highly abundant tRNAs and small subunit rRNA, thereby enriching the starting pool for sRNA transcripts with novel functionality. As a proof-of-principle, we applied sRNA-Seq to the human pathogen Vibrio cholerae. Our results provide information, at unprecedented depth, on the complexity of the sRNA component of a bacterial transcriptome. From 407 039 sequence reads, all 20 known V. cholerae sRNAs, 500 new, putative intergenic sRNAs and 127 putative antisense sRNAs were identified in a limited number of growth conditions examined. In addition, characterization of a subset of the newly identified transcripts led to the identification of a novel sRNA regulator of carbon metabolism. Collectively, these results strongly suggest that the number of sRNAs in bacteria has been greatly underestimated and that future efforts to analyze bacterial transcriptomes will benefit from direct cloning and parallel sequencing experiments aided by 5S/tRNA depletion.
直接克隆和平行测序是一种用于发现微小RNA(miRNA)的极其强大的方法,但尚未应用于细菌转录组。在此,我们介绍了sRNA测序技术,这是一种无偏向性的方法,可用于探究任何原核生物或真核生物中整个小的非编码RNA(sRNA)库。该方法包括一种新颖的处理方式,可去除高度丰富的tRNA和小亚基rRNA的总RNA组分,从而富集具有新功能的sRNA转录本的起始库。作为原理验证,我们将sRNA测序技术应用于人类病原体霍乱弧菌。我们的结果以前所未有的深度提供了有关细菌转录组中sRNA组分复杂性的信息。在有限数量的检测生长条件下,从407,039个序列读数中鉴定出了所有20种已知的霍乱弧菌sRNA、500个新的假定基因间sRNA和127个假定反义sRNA。此外,对新鉴定转录本的一个子集进行表征,导致鉴定出一种新的碳代谢sRNA调节因子。总体而言,这些结果强烈表明,细菌中sRNA的数量被大大低估,并且未来分析细菌转录组的工作将受益于借助5S/tRNA去除的直接克隆和平行测序实验。