Fundación Ciencia & Vida, Santiago, Chile.
Facultad de Ciencias de la Vida, Universidad Andres Bello, Santiago, Chile.
ISME J. 2021 Nov;15(11):3221-3238. doi: 10.1038/s41396-021-00995-x. Epub 2021 May 18.
Members of the genus Acidithiobacillus, now ranked within the class Acidithiobacillia, are model bacteria for the study of chemolithotrophic energy conversion under extreme conditions. Knowledge of the genomic and taxonomic diversity of Acidithiobacillia is still limited. Here, we present a systematic analysis of nearly 100 genomes from the class sampled from a wide range of habitats. Some of these genomes are new and others have been reclassified on the basis of advanced genomic analysis, thus defining 19 Acidithiobacillia lineages ranking at different taxonomic levels. This work provides the most comprehensive classification and pangenomic analysis of this deep-branching class of Proteobacteria to date. The phylogenomic framework obtained illuminates not only the evolutionary past of this lineage, but also the molecular evolution of relevant aerobic respiratory proteins, namely the cytochrome bo ubiquinol oxidases.
属嗜酸硫杆菌的成员,现归类于嗜酸菌门,是研究极端条件下化能自养能量转换的模式细菌。人们对嗜酸菌门的基因组和分类多样性的了解仍然有限。在这里,我们对从广泛的栖息地中采样的该类的近 100 个基因组进行了系统分析。其中一些基因组是新的,而另一些则是基于先进的基因组分析重新分类的,从而定义了 19 个嗜酸菌属谱系,它们处于不同的分类级别。这项工作提供了迄今为止对这一深分支类 Proteobacteria 最全面的分类和泛基因组分析。获得的系统基因组框架不仅阐明了该谱系的进化历史,还阐明了相关需氧呼吸蛋白(即细胞色素 bo 泛醌氧化酶)的分子进化。