Department of Microbiology, Radboud Institute for Biological and Environmental Sciences, Radboud University, Heyendaalseweg 135, 6525 AJ, Nijmegen, The Netherlands.
Antonie Van Leeuwenhoek. 2024 Jul 23;117(1):104. doi: 10.1007/s10482-024-02002-7.
Bacteria of the phylum Planctomycetota have received much attention over the years due to their unique cell biology and potential for biotechnological application. Within the phylum, bacteria of the class Phycisphaerae have been found in a multitude of environmental datasets. However, only a few species have been brought into culture so far and even enrichments are scarce. Therefore, very little is known about their lifestyle, which has hindered efforts to estimate their environmental relevance. Here, we analysed all medium- and high-quality Phycisphaerae genomes represented in the genome taxonomy database to learn more about their physiology. We combined automatic and manual annotation efforts to provide a bird's eye view of their diverse energy metabolisms. Contrasting previous reports, we did not find indications for the presence of genes for anaerobic ammonium oxidation in any Phycisphaerae genome. Instead, we found that many members of this class are adapted to a facultative anaerobic or strictly fermentative lifestyle and may be specialized in the breakdown of carbon compounds produced by other organisms. Based on these findings, we provide a practical overview of organic carbon substrates predicted to be utilized by Phycisphaerae families.
多年来,由于其独特的细胞生物学特性和在生物技术应用方面的潜力,研究人员对浮霉菌门的细菌给予了极大的关注。在该门中,已在大量环境数据集发现了噬藻体纲的细菌。然而,到目前为止,只有少数几种细菌被培养出来,甚至连富集培养也很少。因此,人们对它们的生活方式知之甚少,这阻碍了对其环境相关性的估计。在这里,我们分析了基因组分类数据库中所有中高质量的噬藻体纲基因组,以更多地了解它们的生理学特征。我们结合了自动和手动注释的努力,提供了对其多样化能量代谢的鸟瞰图。与之前的报告相反,我们没有在任何噬藻体纲的基因组中发现存在厌氧氨氧化基因的迹象。相反,我们发现该类的许多成员适应于兼性厌氧或严格发酵的生活方式,并且可能专门用于分解其他生物体产生的碳化合物。基于这些发现,我们提供了一个实用的概述,预测噬藻体纲家族可利用的有机碳底物。