Tianjin Key Laboratory of Aqua-ecology and Aquaculture, Fisheries College, Tianjin Agricultural University, Tianjin, China.
J Fish Dis. 2024 Mar;47(3):e13898. doi: 10.1111/jfd.13898. Epub 2023 Nov 28.
Enterobacter roggenkampii is an opportunistic pathogen that causes infections in a wide range of hosts. A bacterial strain named EOBSR_19 was isolated from diseased silver arowana, Osteoglossum bicirrhosum. This bacterium was identified as E. roggenkampii based on the phenotypic characteristics and sequence analysis of the16S rDNA and gyrB genes. Average nucleotide identity and phylogenetic analysis based on the whole genome sequence further confirmed the bacterial taxonomy of EOBSR_19. Artificial experimental infection indicated that EOBSR_19 was pathogenic to fish. Antimicrobial susceptibility test showed it was multi-drug resistant. The EOBSR_19 was found to be resistant to 18 antibiotics belonging to quinolones, macrolides, sulfonamides, aminoglycosides, and β-lactams classes. The whole genome sequencing analysis showed that EOBSR_19 carried 730 virulence genes that were annotated for different functional modules, such as adhesion and invasion, secretion system, siderophore transport system and bacterial toxin. Among them, the virulence genes related to adhesion and invasion were the most abundant. In addition, drug resistance genes involved in multiple mechanisms of antimicrobial resistance were identified in its genomics, including multidrug resistance efflux pumps, antibiotic inactivating enzymes, and antibiotic binding site mutations. Its genomic analysis via whole-genome sequencing provided insights into the pathogenicity and antimicrobial resistance.
罗根氏肠杆菌是一种机会致病菌,能够感染多种宿主。从患病的银龙鱼(Osteoglossum bicirrhosum)中分离到一株名为 EOBSR_19 的细菌菌株,该菌被鉴定为罗根氏肠杆菌,依据是其表型特征和 16S rDNA 和 gyrB 基因的序列分析。基于全基因组序列的平均核苷酸同一性和系统发育分析进一步证实了 EOBSR_19 的细菌分类地位。人工实验感染表明 EOBSR_19 对鱼类具有致病性。药敏试验表明其具有多重耐药性。该菌对属于喹诺酮类、大环内酯类、磺胺类、氨基糖苷类和β-内酰胺类的 18 种抗生素均具有耐药性。全基因组测序分析表明,EOBSR_19 携带 730 个毒力基因,这些基因被注释为不同的功能模块,如黏附与侵袭、分泌系统、铁载体运输系统和细菌毒素。其中,与黏附与侵袭相关的毒力基因最为丰富。此外,在其基因组中还鉴定到了涉及多种抗菌药物耐药机制的耐药基因,包括多药外排泵、抗生素失活酶和抗生素结合位点突变。通过全基因组测序进行基因组分析,为了解其致病性和抗菌药物耐药性提供了线索。