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双歧杆菌应激相关基因的全基因组评估

Genome-Wide Assessment of Stress-Associated Genes in Bifidobacteria.

机构信息

Systems Biology, Discovery, R&D, Chr. Hansen A/S, Hørsholm, Denmark.

Division of Industrial Biotechnology, Department of Biology and Biological Engineering, Chalmers University of Technologygrid.5371.0, Gothenburg, Sweden.

出版信息

Appl Environ Microbiol. 2022 Apr 12;88(7):e0225121. doi: 10.1128/aem.02251-21. Epub 2022 Mar 21.

DOI:10.1128/aem.02251-21
PMID:35311508
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9004370/
Abstract

Over the last decade, the genomes of several strains have been sequenced, delivering valuable insights into their genetic makeup. However, bifidobacterial genomes have not yet been systematically mined for genes associated with stress response functions and their regulation. In this work, a list of 76 genes related to stress response in bifidobacteria was compiled from previous studies. The prevalence of the genes was evaluated among the genome sequences of 171 strains. Although genes of the protein quality control and DNA repair systems appeared to be highly conserved, genome-wide screening for consensus sequences of putative regulators suggested that the regulation of these systems differs among phylogenetic groups. Homologs of multiple oxidative stress-associated genes are shared across species, albeit at low sequence similarity. Bee isolates were confirmed to harbor unique genetic features linked to oxygen tolerance. Moreover, most studied Bifidobacterium adolescentis and all Bifidobacterium angulatum strains lacked a set of reactive oxygen species-detoxifying enzymes, which might explain their high sensitivity to oxygen. Furthermore, the presence of some putative transcriptional regulators of stress responses was found to vary across species and strains, indicating that different regulation strategies of stress-associated gene transcription contribute to the diverse stress tolerance. The presented stress response gene profiles of strains provide a valuable knowledge base for guiding future studies by enabling hypothesis generation and the identification of key genes for further analyses. Bifidobacteria are Gram-positive bacteria that naturally inhabit diverse ecological niches, including the gastrointestinal tract of humans and animals. Strains of the genus are widely used as probiotics, since they have been associated with health benefits. In the course of their production and administration, probiotic bifidobacteria are exposed to several stressors that can challenge their survival. The stress tolerance of probiotic bifidobacteria is, therefore, an important selection criterion for their commercial application, since strains must maintain their viability to exert their beneficial health effects. As the ability to cope with stressors varies among strains, comprehensive understanding of the underlying stress physiology is required for enabling knowledge-driven strain selection and optimization of industrial-scale production processes.

摘要

在过去的十年中,已经对几种双歧杆菌菌株的基因组进行了测序,这为它们的遗传结构提供了有价值的见解。然而,双歧杆菌的基因组尚未被系统地挖掘与应激反应功能及其调控相关的基因。在这项工作中,从以前的研究中编译了一份与双歧杆菌应激反应相关的 76 个基因列表。评估了这些基因在 171 株双歧杆菌基因组序列中的普遍性。尽管蛋白质质量控制和 DNA 修复系统的基因似乎高度保守,但对假定调控因子的保守序列进行全基因组筛选表明,这些系统的调控在系统发育群之间存在差异。多种与氧化应激相关的基因的同源物在物种间共享,尽管序列相似性较低。蜜蜂分离株被证实具有与耐氧性相关的独特遗传特征。此外,大多数研究的青春双歧杆菌和所有双歧杆菌角状亚种菌株都缺乏一组活性氧解毒酶,这可能解释了它们对氧的高度敏感性。此外,还发现应激反应相关基因转录的一些假定转录调节剂的存在在物种和菌株之间存在差异,表明与应激相关的基因转录的不同调控策略有助于不同的应激耐受。所提供的双歧杆菌菌株的应激反应基因谱为指导未来的研究提供了有价值的知识库,通过生成假设和识别进一步分析的关键基因来实现。双歧杆菌是革兰氏阳性细菌,天然栖息在多种生态位,包括人和动物的胃肠道。双歧杆菌属的菌株被广泛用作益生菌,因为它们与健康益处有关。在生产和管理过程中,益生菌双歧杆菌会暴露于多种可能挑战其生存的应激源。因此,益生菌双歧杆菌的应激耐受能力是其商业应用的一个重要选择标准,因为菌株必须保持其活力才能发挥其有益的健康作用。由于应激源在双歧杆菌菌株之间的耐受性不同,因此需要全面了解潜在的应激生理学,以便能够进行基于知识的菌株选择和优化工业规模的生产过程。

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本文引用的文献

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Nat Methods. 2021 Apr;18(4):366-368. doi: 10.1038/s41592-021-01101-x. Epub 2021 Apr 7.
2
Comparative genomics of the gut commensal Bifidobacterium bifidum reveals adaptation to carbohydrate utilization.双歧双歧杆菌肠道共生菌的比较基因组学揭示了其对碳水化合物利用的适应性。
Biochem Biophys Res Commun. 2021 Apr 2;547:155-161. doi: 10.1016/j.bbrc.2021.02.046. Epub 2021 Feb 19.
3
Bifidobacterium adolescentis as a key member of the human gut microbiota in the production of GABA.
Foods. 2025 May 16;14(10):1766. doi: 10.3390/foods14101766.
4
Deciphering probiotic potential: a comprehensive guide to probiogenomic analyses.解读益生菌潜力:益生菌基因组分析综合指南
Future Microbiol. 2025 May-Jun;20(7-9):611-622. doi: 10.1080/17460913.2025.2492472. Epub 2025 Apr 14.
5
Unlocking Probiotic Potential: Genomic Insights into Weissella paramesenteroides UFTM 2.6.1.挖掘益生菌潜力:对副干酪魏斯氏菌UFTM 2.6.1的基因组洞察
Probiotics Antimicrob Proteins. 2024 Dec 5. doi: 10.1007/s12602-024-10409-x.
6
The influence of the gut-brain axis on anxiety and depression: A review of the literature on the use of probiotics.肠道-脑轴对焦虑和抑郁的影响:关于益生菌应用的文献综述
J Tradit Complement Med. 2024 Mar 21;14(3):237-255. doi: 10.1016/j.jtcme.2024.03.011. eCollection 2024 May.
7
species viability in dairy-based probiotic foods: challenges and innovative approaches for accurate viability determination and monitoring of probiotic functionality.基于乳制品的益生菌食品中的菌种活力:准确测定活力以及监测益生菌功能的挑战与创新方法
Front Microbiol. 2024 Feb 2;15:1327010. doi: 10.3389/fmicb.2024.1327010. eCollection 2024.
8
Exploring species community and functional variations with human gut microbiome structure and health beyond infancy.探索婴儿期之后人类肠道微生物群结构与健康状况下的物种群落及功能变化。
Microbiome Res Rep. 2023 Mar 31;2(2):9. doi: 10.20517/mrr.2023.01. eCollection 2023.
9
Novel Insights into the Molecular Mechanisms Underlying Robustness and Stability in Probiotic Bifidobacteria.深入了解益生菌双歧杆菌在稳健性和稳定性方面的分子机制的新见解。
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10
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4
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5
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6
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9
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Anaerobe. 2019 Jun;57:45-54. doi: 10.1016/j.anaerobe.2019.03.012. Epub 2019 Mar 15.
10
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Syst Appl Microbiol. 2019 Mar;42(2):205-216. doi: 10.1016/j.syapm.2018.11.005. Epub 2018 Nov 29.