Bei Cheng, Zhu Junhao, Culviner Peter H, Rubin Eric J, Fortune Sarah M, Gao Qian, Liu Qingyun
Key Laboratory of Medical Molecular Virology (MOE/NHC/CAMS), School of Basic Medical Science, Shanghai Medical College, Shanghai Institute of Infectious Disease and Biosecurity, Fudan University, Shanghai, China.
Department of Immunology and Infectious Diseases, Harvard T. H. Chan School of Public Health, Boston, Massachusetts, USA.
Res Sq. 2023 Sep 18:rs.3.rs-3303807. doi: 10.21203/rs.3.rs-3303807/v1.
Transcriptional regulation is a critical adaptive mechanism that allows bacteria to respond to changing environments, yet the concept of transcriptional plasticity (TP) remains largely unexplored. In this study, we investigate the genome-wide TP profiles of () genes by analyzing 894 RNA sequencing samples derived from 73 different environmental conditions. Our data reveal that genes exhibit significant TP variation that correlates with gene function and gene essentiality. We also found that critical genetic features, such as gene length, GC content, and operon size independently impose constraints on TP, beyond trans-regulation. By extending our analysis to include two other species -- and s -- we demonstrate a striking conservation of the TP landscape. This study provides a comprehensive understanding of the TP exhibited by mycobacteria genes, shedding light on this significant, yet understudied, genetic feature encoded in bacterial genomes.
转录调控是一种关键的适应性机制,使细菌能够应对不断变化的环境,然而转录可塑性(TP)的概念在很大程度上仍未得到充分探索。在本研究中,我们通过分析来自73种不同环境条件的894个RNA测序样本,研究了()基因的全基因组TP图谱。我们的数据表明,基因表现出与基因功能和基因必需性相关的显著TP变异。我们还发现,关键的遗传特征,如基因长度、GC含量和操纵子大小,除了反式调控之外,还独立地对TP施加限制。通过将我们的分析扩展到另外两个物种——和s,我们证明了TP图谱具有显著的保守性。这项研究全面了解了分枝杆菌基因所表现出的TP,揭示了这种编码在细菌基因组中的重要但研究不足的遗传特征。