Centre for Microbiology and Environmental Systems Science, University of Vienna, Vienna, Austria.
Laboratory of Microbiology, Wageningen University and Research, Wageningen, The Netherlands.
Nat Commun. 2021 Jun 29;12(1):4021. doi: 10.1038/s41467-021-24294-3.
Chlamydiae are highly successful strictly intracellular bacteria associated with diverse eukaryotic hosts. Here we analyzed metagenome-assembled genomes of the "Genomes from Earth's Microbiomes" initiative from diverse environmental samples, which almost double the known phylogenetic diversity of the phylum and facilitate a highly resolved view at the chlamydial pangenome. Chlamydiae are defined by a relatively large core genome indicative of an intracellular lifestyle, and a highly dynamic accessory genome of environmental lineages. We observe chlamydial lineages that encode enzymes of the reductive tricarboxylic acid cycle and for light-driven ATP synthesis. We show a widespread potential for anaerobic energy generation through pyruvate fermentation or the arginine deiminase pathway, and we add lineages capable of molecular hydrogen production. Genome-informed analysis of environmental distribution revealed lineage-specific niches and a high abundance of chlamydiae in some habitats. Together, our data provide an extended perspective of the variability of chlamydial biology and the ecology of this phylum of intracellular microbes.
衣原体是与多种真核宿主相关的高度成功的严格细胞内细菌。在这里,我们分析了来自不同环境样本的“地球微生物组的基因组”计划的宏基因组组装基因组,这几乎使该门的已知系统发育多样性增加了一倍,并可以高度解析衣原体的泛基因组。衣原体的定义是相对较大的核心基因组,表明其具有细胞内生活方式,以及具有环境谱系的高度动态辅助基因组。我们观察到编码还原三羧酸循环和光驱动 ATP 合成酶的衣原体谱系。我们展示了通过丙酮酸发酵或精氨酸脱氨酶途径进行广泛的厌氧能量生成的潜力,并添加了能够产生分子氢的谱系。基于基因组的环境分布分析揭示了谱系特异性小生境和某些栖息地中衣原体的高丰度。总之,我们的数据提供了衣原体生物学和该细胞内微生物门生态学的可变性的扩展视角。