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Identification of 17 Pseudomonas aeruginosa sRNAs and prediction of sRNA-encoding genes in 10 diverse pathogens using the bioinformatic tool sRNAPredict2

机译:使用生物信息学工具sRNAPredict2鉴定17种铜绿假单胞菌sRNA并预测10种不同病原体中的sRNA编码基因

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摘要

sRNAs are small, non-coding RNA species that control numerous cellular processes. Although it iswidely accepted that sRNAs are encoded by most if not all bacteria, genome-wide annotations for sRNA-encoding genes have been conducted in only a few of the nearly 300 bacterial species sequenced to date. To facilitate the efficient annotation of bacterial genomes for sRNA-encoding genes, we developed a program, sRNAPredict2, that identifies putative sRNAs by searching for co-localization of genetic features commonly associated with sRNA-encoding genes. Using sRNAPredict2, we conducted genome-wide annotations for putative sRNA-encoding genes in the intergenic regions of 11 diverse pathogens. In total, 2759 previously unannotated candidate sRNA loci were predicted. There was considerable range in the number of sRNAs predicted in the different pathogens analyzed, raising the possibility that there are species-specific differences in the reliance on sRNA-mediated regulation. Of 34 previously unannotated sRNAs predicted in the opportunistic pathogen Pseudomonas aeruginosa, 31 were experimentally tested and 17 were found to encode sRNA transcripts. Our findings suggest that numerous genes have been missed in the current annotations of bacterial genomes and that, by using improved bioinformatic approaches and tools, much remains to be discovered in 'intergenic' sequences.
机译:sRNA是控制许多细胞过程的小型非编码RNA物种。尽管人们普遍认为sRNA是由大多数细菌(即使不是全部细菌)编码的,但迄今为止,仅在近300种细菌中仅有少数进行了sRNA编码基因的全基因组注释。为了促进细菌基因组对sRNA编码基因的有效注释,我们开发了sRNAPredict2程序,该程序通过搜索通常与sRNA编码基因相关的遗传特征的共定位来鉴定推定的sRNA。使用sRNAPredict2,我们对11种病原体的基因间区域中假定的sRNA编码基因进行了全基因组注释。总共预测了2759个先前未注释的候选sRNA基因座。在分析的不同病原体中预测到的sRNA数量范围相当大,从而增加了对sRNA介导的调节的依赖性存在物种特异性差异的可能性。在机会病原体铜绿假单胞菌中预测的34种先前未注释的sRNA中,有31种经过实验测试,发现17种可编码sRNA转录本。我们的发现表明,细菌基因组的当前注释中遗漏了许多基因,并且通过使用改良的生物信息学方法和工具,在“基因间”序列中仍有许多发现。

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