Microbiologia, Departament Biologia, Universitat de les Illes Balears, Spain; Institut Mediterrani d'Estudis Avançats, IMEDEA (CSIC-UIB), Spain.
Microbiologia, Departament Biologia, Universitat de les Illes Balears, Spain.
Syst Appl Microbiol. 2022 Jan;45(1):126289. doi: 10.1016/j.syapm.2021.126289. Epub 2021 Dec 6.
Pseudomonas is one the best studied bacterial genera, and it is the genus with the highest number of species among the gram-negative bacteria. Pseudomonas spp. are widely distributed and play relevant ecological roles; several species are commensal or pathogenic to humans, animals and plants. The main aim of the present minireview is the discussion of how the Pseudomonas taxonomy has evolved with the development of bacterial taxonomy since the first description of the genus in 1894. We discuss how the successive implementation of novel methodologies has influenced the taxonomy of the genus and, vice versa, how the taxonomic studies developed in Pseudomonas have introduced novel tools and concepts to bacterial taxonomy. Current phylogenomic analyses of the family Pseudomonadaceae demonstrate that a considerable number of named Pseudomonas spp. are not monophyletic with P. aeruginosa, the type species of the genus, and that a reorganization of several genera can be foreseen. Phylogenomics of Pseudomonas, Azomonas and Azotobacter within the Pseudomonadaceae is presented as a case study. Five new genus names are delineated to accommodate five well-defined phylogenetic branches that are supported by the shared genes in each group, and two of them can be differentiated by physiological and ecological properties: the recently described genus Halopseudomonas and the genus Stutzerimonas proposed in the present study. Five former Pseudomonas species are transferred to Halopseudomonas and 10 species to Stutzerimonas.
假单胞菌是研究最多的细菌属之一,也是革兰氏阴性菌中物种数量最多的属。假单胞菌广泛分布,并在生态中发挥相关作用;一些物种是人类、动物和植物的共生菌或病原菌。本综述的主要目的是讨论自 1894 年首次描述该属以来,随着细菌分类学的发展,假单胞菌分类学是如何演变的。我们讨论了新方法的相继实施如何影响该属的分类学,以及反之亦然,假单胞菌分类学中的分类学研究如何为细菌分类学引入了新的工具和概念。目前对假单胞菌科的系统发育基因组分析表明,相当数量的命名为假单胞菌的物种与该属的模式种铜绿假单胞菌没有单系关系,并且可以预见几个属的重组。假单胞菌、节杆菌和固氮菌在假单胞菌科中的系统发育基因组学被作为一个案例研究进行介绍。为了适应每个组中共享基因支持的五个明确界定的系统发育分支,划定了五个新的属名,其中两个可以通过生理和生态特性来区分:最近描述的盐单胞菌属和本研究中提出的施特氏菌属。将五个以前的假单胞菌种转移到盐单胞菌属,将 10 个种转移到施特氏菌属。