Comparative genomics sheds light on transcription factor-mediated regulation in the extreme acidophilic Acidithiobacillia representatives

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-01-01 DOI:10.1016/j.resmic.2023.104135
Pedro Sepúlveda-Rebolledo , Carolina González-Rosales , Mark Dopson , Ernesto Pérez-Rueda , David S. Holmes , Jorge H. Valdés
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Abstract

Extreme acidophiles thrive in acidic environments, confront a multitude of challenges, and demonstrate remarkable adaptability in their metabolism to cope with the ever-changing environmental fluctuations, which encompass variations in temperature, pH levels, and the availability of electron acceptors and donors. The survival and proliferation of members within the Acidithiobacillia class rely on the deployment of transcriptional regulatory systems linked to essential physiological traits. The study of these transcriptional regulatory systems provides valuable insights into critical processes, such as energy metabolism and nutrient assimilation, and how they integrate into major genetic-metabolic circuits. In this study, we examined the transcriptional regulatory repertoires and potential interactions of forty-three Acidithiobacillia complete and draft genomes, encompassing nine species. To investigate the function and diversity of Transcription Factors (TFs) and their DNA Binding Sites (DBSs), we conducted a genome-wide comparative analysis, which allowed us to identify these regulatory elements in representatives of Acidithiobacillia. We classified TFs into gene families and compared their occurrence among all representatives, revealing conservation patterns across the class. The results identified conserved regulators for several pathways, including iron and sulfur oxidation, the main pathways for energy acquisition, providing new evidence for viable regulatory interactions and branch-specific conservation in Acidithiobacillia. The identification of TFs and DBSs not only corroborates existing experimental information for selected species, but also introduces novel candidates for experimental validation. Moreover, these promising candidates have the potential for further extension to new representatives within the class.

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比较基因组学揭示了极端嗜酸性硫杆菌代表中转录因子介导的调控。
极端嗜酸菌在酸性环境中茁壮成长,面临着众多挑战,并在新陈代谢中表现出非凡的适应性,以应对不断变化的环境波动,包括温度、pH水平以及电子受体和供体的可用性的变化。酸性硫杆菌类成员的生存和增殖依赖于与基本生理特征相关的转录调控系统的部署。对这些转录调控系统的研究为关键过程提供了有价值的见解,如能量代谢和营养同化,以及它们如何融入主要的遗传代谢回路。在这项研究中,我们检查了43个酸性硫杆菌完整基因组和草案基因组的转录调控库和潜在的相互作用,包括9个物种。为了研究转录因子(TF)及其DNA结合位点(DBSs)的功能和多样性,我们进行了全基因组比较分析,这使我们能够在酸性硫杆菌的代表中鉴定这些调节元件。我们将转录因子分为基因家族,并比较其在所有代表中的发生率,揭示了整个类别的保护模式。结果确定了几种途径的保守调节因子,包括铁和硫氧化,这是能量获取的主要途径,为酸性硫杆菌中可行的调节相互作用和分支特异性保护提供了新的证据。TF和DBS的鉴定不仅证实了所选物种的现有实验信息,而且为实验验证引入了新的候选者。此外,这些有前途的候选人有可能进一步扩大到班级中的新代表。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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