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RECTA: Regulon Identification Based on Comparative Genomics and Transcriptomics Analysis

机译:RECTA:基于比较基因组学和转录组学分析的调节子鉴定

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摘要

Regulons, which serve as co-regulated gene groups contributing to the transcriptional regulation of microbial genomes, have the potential to aid in understanding of underlying regulatory mechanisms. In this study, we designed a novel computational pipeline, regulon identification based on comparative genomics and transcriptomics analysis (RECTA), for regulon prediction related to the gene regulatory network under certain conditions. To demonstrate the effectiveness of this tool, we implemented RECTA on Lactococcus lactis MG1363 data to elucidate acid-response regulons. A total of 51 regulons were identified, 14 of which have computational-verified significance. Among these 14 regulons, five of them were computationally predicted to be connected with acid stress response. Validated by literature, 33 genes in Lactococcus lactis MG1363 were found to have orthologous genes which were associated with six regulons. An acid response related regulatory network was constructed, involving two trans-membrane proteins, eight regulons (llrA, llrC, hllA, ccpA, NHP6A, rcfB, regulons #8 and #39), nine functional modules, and 33 genes with orthologous genes known to be associated with acid stress. The predicted response pathways could serve as promising candidates for better acid tolerance engineering in Lactococcus lactis. Our RECTA pipeline provides an effective way to construct a reliable gene regulatory network through regulon elucidation, and has strong application power and can be effectively applied to other bacterial genomes where the elucidation of the transcriptional regulation network is needed.
机译:调节子,作为共同调节的基因组,有助于微生物基因组的转录调节,有潜力帮助理解潜在的调节机制。在这项研究中,我们设计了一种新颖的计算流程,即基于比较基因组学和转录组学分析(RECTA)的regulon识别,用于在一定条件下预测与基因调控网络有关的regulon。为了证明此工具的有效性,我们对乳酸乳球菌MG1363数据实施了RECTA,以阐明酸响应调节剂。总共鉴定出51个调节子,其中14个具有计算验证的意义。在这14个调节子中,据计算预测其中有5个与酸性胁迫反应有关。经文献验证,发现乳酸乳球菌MG1363中的33个基因具有与六个调节子相关的直系同源基因。构建了一个与酸反应相关的调控网络,涉及两个跨膜蛋白,八个调节子(llrA,llrC,hllA,ccpA,NHP6A,rcfB,调节子#8和#39),九个功能模块和33个具有直系同源基因的基因与酸胁迫有关。预测的反应途径可以作为乳酸乳球菌更好的耐酸性工程的有希望的候选者。我们的RECTA管线提供了一种有效的方法,可通过调节子调控来构建可靠的基因调控网络,并且具有强大的应用能力,并且可以有效地应用于需要阐明调控调控网络的其他细菌基因组。

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