Wimmer Benedikt H, Moraïs Sarah, Zalk Ran, Mizrahi Itzhak, Medalia Ohad
Department of Biochemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
National Institute of Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva 84105, Israel.
Microlife. 2023 Mar 23;4:uqad010. doi: 10.1093/femsml/uqad010. eCollection 2023.
Microbial taxonomy is critical for describing ecosystem composition, yet the link between taxonomy and properties of microbes, such as their cellular architecture, remains poorly defined. We hypothesized that the cellular architecture represents microbial niche adaptation. We used cryo-electron microscopy and tomography to analyze microbial morphology in order to associate cellular architecture with phylogeny and genomic contents. As a model system, we chose the core rumen microbiome and imaged a large isolate collection covering 90% of its richness at the order level. Based on quantifications of several morphological features, we found that the visual similarity of microbiota is significantly related to their phylogenetic distance. Up to the level, closely related microbes have similar cellular architectures, which are highly correlated with genome similarity. However, in more distantly related bacteria, the correlation both with taxonomy and genome similarity is lost. This is the first comprehensive study of microbial cellular architecture and our results highlight that structure remains an important parameter in classification of microorganisms, along with functional parameters such as metabolomics. Furthermore, the high-quality images presented in this study represent a reference database for the identification of bacteria in anaerobic ecosystems.
微生物分类对于描述生态系统组成至关重要,然而,分类学与微生物特性(如细胞结构)之间的联系仍未明确界定。我们假设细胞结构代表了微生物的生态位适应性。我们使用冷冻电子显微镜和断层扫描来分析微生物形态,以便将细胞结构与系统发育和基因组内容联系起来。作为一个模型系统,我们选择了瘤胃核心微生物群,并对一个大型分离株集合进行成像,该集合涵盖了其在目水平上90%的丰富度。基于对几种形态特征的量化,我们发现微生物群的视觉相似性与其系统发育距离显著相关。在目水平上,亲缘关系较近的微生物具有相似的细胞结构,这与基因组相似性高度相关。然而,在亲缘关系较远的细菌中,与分类学和基因组相似性的相关性都消失了。这是对微生物细胞结构的首次全面研究,我们的结果强调,结构仍然是微生物分类中的一个重要参数,与代谢组学等功能参数一样。此外,本研究中呈现的高质量图像代表了一个用于鉴定厌氧生态系统中细菌的参考数据库。