Geraldes Inês, Fernandes Mónica, Fraga Alexandra G, Osório Nuno S
Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, Braga, Portugal.
ICVS/3B's-PT Government Associate Laboratory, Braga, Portugal.
Front Microbiol. 2022 Sep 30;13:989464. doi: 10.3389/fmicb.2022.989464. eCollection 2022.
Genome sequencing projects of humans and other organisms reinforced that the complexity of biological systems is largely attributed to the tight regulation of gene expression at the epigenome and RNA levels. As a consequence, plenty of technological developments arose to increase the sequencing resolution to the cell dimension creating the single-cell genomics research field. Single-cell RNA sequencing (scRNA-seq) is leading the advances in this topic and comprises a vast array of different methodologies. scRNA-seq and its variants are more and more used in life science and biomedical research since they provide unbiased transcriptomic sequencing of large populations of individual cells. These methods go beyond the previous "bulk" methodologies and sculpt the biological understanding of cellular heterogeneity and dynamic transcriptomic states of cellular populations in immunology, oncology, and developmental biology fields. Despite the large burden caused by mycobacterial infections, advances in this field obtained single-cell genomics had been comparatively modest. Nonetheless, seminal research publications using single-cell transcriptomics to study host cells infected by mycobacteria have become recently available. Here, we review these works summarizing the most impactful findings and emphasizing the different and recent single-cell methodologies used, potential issues, and problems. In addition, we aim at providing insights into current research gaps and potential future developments related to the use of single-cell genomics to study mycobacterial infection.
人类和其他生物的基因组测序项目进一步证实,生物系统的复杂性在很大程度上归因于表观基因组和RNA水平上对基因表达的严格调控。因此,出现了大量技术进展,以将测序分辨率提高到细胞层面,从而创建了单细胞基因组学研究领域。单细胞RNA测序(scRNA-seq)引领了该领域的进展,并且包含大量不同的方法。scRNA-seq及其变体在生命科学和生物医学研究中的应用越来越广泛,因为它们能对大量单个细胞进行无偏差的转录组测序。这些方法超越了以往的“批量”方法,深化了我们对免疫学、肿瘤学和发育生物学领域中细胞异质性以及细胞群体动态转录组状态的生物学理解。尽管分枝杆菌感染造成了巨大负担,但在该领域,单细胞基因组学方面取得的进展相对有限。尽管如此,最近已有开创性的研究论文利用单细胞转录组学来研究受分枝杆菌感染的宿主细胞。在此,我们对这些研究进行综述,总结最具影响力的发现,并强调所使用的不同的最新单细胞方法、潜在问题。此外,我们旨在深入探讨当前的研究空白以及与利用单细胞基因组学研究分枝杆菌感染相关的潜在未来发展方向。