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细胞排列影响生物膜中的代谢活性和抗生素耐受性。

Cell arrangement impacts metabolic activity and antibiotic tolerance in biofilms.

作者信息

Dayton Hannah, Kiss Julie, Wei Mian, Chauhan Shradha, LaMarre Emily, Cornell William Cole, Morgan Chase J, Janakiraman Anuradha, Min Wei, Tomer Raju, Price-Whelan Alexa, Nirody Jasmine A, Dietrich Lars E P

机构信息

Department of Biological Sciences, Columbia University, New York, NY 10025.

Department of Chemistry, Columbia University, New York, NY 10025.

出版信息

bioRxiv. 2023 Aug 28:2023.06.20.545666. doi: 10.1101/2023.06.20.545666.

Abstract

Cells must access resources to survive, and the anatomy of multicellular structures influences this access. In diverse multicellular eukaryotes, resources are provided by internal conduits that allow substances to travel more readily through tissue than they would via diffusion. Microbes growing in multicellular structures, called biofilms, are also affected by differential access to resources and we hypothesized that this is influenced by the physical arrangement of the cells. In this study, we examined the microanatomy of biofilms formed by the pathogenic bacterium and discovered that clonal cells form striations that are packed lengthwise across most of a mature biofilm's depth. We identified mutants, including those defective in pilus function and in O-antigen attachment, that show alterations to this lengthwise packing phenotype. Consistent with the notion that cellular arrangement affects access to resources within the biofilm, we found that while the wild type shows even distribution of tested substrates across depth, the mutants show accumulation of substrates at the biofilm boundaries. Furthermore, we found that altered cellular arrangement within biofilms affects the localization of metabolic activity, the survival of resident cells, and the susceptibility of subpopulations to antibiotic treatment. Our observations provide insight into cellular features that determine biofilm microanatomy, with consequences for physiological differentiation and drug sensitivity.

摘要

细胞必须获取资源才能存活,而多细胞结构的解剖结构会影响这种获取。在多种多细胞真核生物中,资源由内部管道提供,这些管道使物质在组织中比通过扩散更容易移动。在称为生物膜的多细胞结构中生长的微生物也会受到资源获取差异的影响,我们推测这受到细胞的物理排列的影响。在这项研究中,我们检查了由致病细菌形成的生物膜的微观解剖结构,发现克隆细胞形成了条纹,这些条纹在成熟生物膜的大部分深度上沿长度方向排列。我们鉴定出了突变体,包括那些菌毛功能和O抗原附着有缺陷的突变体,它们表现出这种纵向排列表型的改变。与细胞排列影响生物膜内资源获取的观点一致,我们发现野生型在整个深度上测试底物分布均匀,而突变体则在生物膜边界处积累底物。此外,我们发现生物膜内细胞排列的改变会影响代谢活动的定位、驻留细胞的存活以及亚群对抗生素治疗的敏感性。我们的观察结果为决定生物膜微观解剖结构的细胞特征提供了见解,这对生理分化和药物敏感性具有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ea6/10472790/d8c6ced3682d/nihpp-2023.06.20.545666v2-f0001.jpg

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