Microbiology Department, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, United States.
Front Cell Infect Microbiol. 2020 Oct 14;10:569070. doi: 10.3389/fcimb.2020.569070. eCollection 2020.
Microbes are the most prevalent form of life yet also the least well-understood in terms of their diversity. Due to a greater appreciation of their role in modulating host physiology, microbes have come to the forefront of biological investigation of human health and disease. Despite this, capturing the heterogeneity of microbes, and that of the host responses they induce, has been challenging due to the bulk methods of nucleic acid and cellular analysis. One of the greatest recent advancements in our understanding of complex organisms has happened in the field of single-cell analysis through genomics, transcriptomics, and spatial resolution. While significantly advancing our understanding of host biology, these techniques have only recently been applied to microbial systems to shed light on their diversity as well as interactions with host cells in both commensal and pathogenic contexts. In this review, we highlight emerging technologies that are poised to provide key insights into understanding how microbe heterogeneity can be studied. We then take a detailed look into how host single-cell analysis has uncovered the impact of microbes on host heterogeneity and the effect of host biology on microorganisms. Most of these insights would have been challenging, and in some cases impossible, without the advent of single-cell analysis, suggesting the importance of the single-cell paradigm for progressing the microbiology field forward through a host-microbiome perspective and applying these insights to better understand and treat human disease.
微生物是最普遍的生命形式,但就其多样性而言,它们也是了解最少的。由于人们越来越认识到它们在调节宿主生理机能方面的作用,微生物已成为人类健康和疾病生物学研究的前沿领域。尽管如此,由于核酸和细胞分析的批量方法,捕捉微生物的异质性及其诱导的宿主反应的异质性一直具有挑战性。在单细胞分析领域,通过基因组学、转录组学和空间分辨率,我们对复杂生物的理解最近取得了最大的进展之一。尽管这些技术显著提高了我们对宿主生物学的理解,但它们最近才被应用于微生物系统,以揭示它们在共生和致病环境中与宿主细胞相互作用的多样性。在这篇综述中,我们强调了一些新兴技术,这些技术有望为深入了解微生物的异质性提供关键见解。然后,我们详细探讨了宿主单细胞分析如何揭示微生物对宿主异质性的影响,以及宿主生物学对微生物的影响。如果没有单细胞分析的出现,其中的大部分见解将是具有挑战性的,在某些情况下甚至是不可能的,这表明单细胞分析范式对于通过宿主-微生物组的角度推进微生物学领域的重要性,并将这些见解应用于更好地理解和治疗人类疾病。