Facultad de Ingeniería y Ciencias, Universidad Adolfo Ibáñez, Viña del Mar, Chile.
Laboratorio de Fisiología y Genética Marina (FIGEMA), Centro de Estudios Avanzados de Zonas Áridas (CEAZA), Coquimbo, Chile.
Microb Biotechnol. 2021 May;14(3):1060-1072. doi: 10.1111/1751-7915.13753. Epub 2021 Jan 25.
Members of the genus Pseudomonas inhabit diverse environments, such as soil, water, plants and humans. The variability of habitats is reflected in the diversity of the structure and composition of their genomes. This cosmopolitan bacterial genus includes species of biotechnological, medical and environmental importance. In this study, we report on the most relevant genomic characteristics of Pseudomonas sp. strain ABC1, a siderophore-producing fluorescent strain recently isolated from soil. Phylogenomic analyses revealed that this strain corresponds to a novel species forming a sister clade of the recently proposed Pseudomonas kirkiae. The genomic information reveals an overrepresented repertoire of mechanisms to hoard iron when compared to related strains, including a high representation of fecI-fecR family genes related to iron regulation and acquisition. The genome of the Pseudomonas sp. ABC1 contains the genes for non-ribosomal peptide synthetases (NRPSs) of a novel putative Azotobacter-related pyoverdine-type siderophore, a yersiniabactin-type siderophore and an antimicrobial betalactone; the last two are found only in a limited number of Pseudomonas genomes. Strain ABC1 can produce siderophores in a low-cost medium, and the supernatants from cultures of this strain promote plant growth, highlighting their biotechnological potential as a sustainable industrial microorganism.
假单胞菌属的成员栖息在各种环境中,如土壤、水、植物和人类。生境的可变性反映在其基因组结构和组成的多样性上。这个世界性的细菌属包括具有生物技术、医学和环境重要性的物种。在本研究中,我们报告了假单胞菌 sp. 菌株 ABC1 的最相关的基因组特征,该菌株是最近从土壤中分离出来的产铁载体荧光菌株。系统发育基因组分析表明,该菌株与最近提出的假单胞菌 kirkiae 形成姐妹分支,对应于一个新种。与相关菌株相比,基因组信息显示出更多的铁储存机制,包括与铁调节和获取相关的 fecI-fecR 家族基因的高表达。假单胞菌 sp. ABC1 的基因组包含非核糖体肽合成酶 (NRPSs) 的基因,用于一种新型的可能与固氮菌有关的吡咯并喹啉啉型铁载体、耶尔森菌素型铁载体和一种抗菌贝塔内酯;后两者仅在少数假单胞菌基因组中发现。菌株 ABC1 可以在低成本培养基中产生铁载体,并且该菌株培养物的上清液促进植物生长,突出了其作为可持续工业微生物的生物技术潜力。